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  • 1
    Call number: ZSP-686-93
    In: Report
    Type of Medium: Monograph available for loan
    Pages: 171 S. : überw. Ill., graph. Darst.
    ISSN: 0937-1060
    Series Statement: Report / Max-Planck-Institut für Meteorologie 93
    Language: English
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  • 2
    Call number: ZSP-553-36
    In: Meddelelser om Grønland
    Type of Medium: Monograph available for loan
    Pages: 102 S. : zahlr. Kt.
    ISBN: 8750399721
    ISSN: 0106-1054
    Series Statement: Meddelelser om Grønland : Bioscience 36
    Language: English
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  • 3
    Call number: ZSP-553-29
    In: Meddelelser om Grønland
    Type of Medium: Monograph available for loan
    Pages: 22 S. : Ill., graph. Darst., Kt.
    ISBN: 8760133929
    ISSN: 0106-1046
    Series Statement: Meddelelser om Grønland : Geoscience 29
    Language: English
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  • 4
    Series available for loan
    Series available for loan
    Clausthal-Zellerfeld : Selbstverlag der Geowissenschaftlichen Institute der Technischen Universität Clausthal
    Associated volumes
    Call number: SR 91.1170(41) ; AWI G6-19-35989
    In: Clausthaler geowissenschaftliche Dissertationen, Nr. 41
    Type of Medium: Series available for loan
    Pages: 145 Seiten , Illustrationen , 4 Kartenbeilagen
    Series Statement: Clausthaler geowissenschaftliche Dissertationen 41
    Language: German , Spanish
    Note: Kartenbeilage unter dem Titel: Geologische Karte des zentralen Teiles des Sierra de Santa Victoria im argentinisch-bolivianischen Grenzgebiet. , Kartenbeilage unter dem Titel: Geologische Karte des Hornillos Komplexes : Sierra de Santa Victoria, Prov. de Salta / Argentinien. , Kartenbeilage unter dem Titel: Geologische Karte des Maiguasi-Gebietes. , Kartenbeilage unter dem Titel: Geologische Karte des Rejará-Stock : Sierra de Santa Victoria (Prov. Arce, Dpto. Tarija, Bolivien). , Zugleich: Clausthal, Technische Universität, Dissertation, 1992 , lnhaltverzeichnis: Einleitung. - 1.1 Überblick über die Alkaligesteinsvorkommen der Ostkordillere. - 1.2 Der kretazische Magmatismus in NW-Argentinien und S-Bolivien. - 1.3 Zielsetzung der Arbeit. - 1.4 Arbeitsmethodik. - 1.4.1 Kartierung und Probennahme. - 1.4.2 Mikroskopie. - 1.4.3 Röntgendiffraktometrie (RDA). - 1.4.4 Kathodolumineszenz (KL). - 1.4.5 Analytische Geochemie. - 1.4.5.1 Aufbereitung. - 1.4.5.2 Atomemissionsspektrometrie mit induktiv gekoppeltem Plasma (ICP). - 1.4.5.3 Röntgenfluoreszenzanalyse (RFA). - 1.4.5.4 FeO-Bestimmung. - 1.4.5.5 H2O-Bestimmung. - 1.4.5.6 Gesamt-C-Bestimmung als CO2. - 1.4.5.7 lnstrumentelle Neutronenaktivierungsanalyse (INAA). - 1.4.5.8 C- und O-lsotopenmessungen. - 1.4.5.9 Standardabweichungen der Methoden. - 2 Geographische Aspekte des Arbeitsgebietes. - 2.1 Lage des Arbeitsgebietes. - 2.2 Morphotektonische Gliederung der Anden in NW-Argentinien und S-Bolivien. - 3 Zur Geologie der Sierra de Santa Victoria. - 3.1 Sedimentare Abfolge. - 3.1.1 Wendium - Unteres Kambrium. - 3.1.2 Oberes Kambrium. - 3.1.3 Ordovizium. - 3.1.4 Silur. - 3.1.5 Devon. - 3.1.6 Karbon. - 3.1.7 Kreide - Alttertiär. - 3.1.8 Alt-Ouartär. - 3.1.9 Jung-Quartär. - 3.2 Magmatische Abfolge: Geologie und Petrographie des Hornillos-Komplexes. - 3.2.1 Frühere Arbeiten. - 3.2.2 Allgemeine geologische Aspekte des Komplexes. - 3.3 lntrusivgesteine. - 3.3.1 Nordmarkite. - 3.3.2 Syenite. - 3.3.3 Grobkörige Syenite. - 3.3.4 Monzonite. - 3.3.5 Pulaskite. - 3.3.6 Syenitporphyre. - 3.3.7 Vulkanische Schlotbreccien. - 3.4 Vulkaniklastische Ablolge in mesozoischen Sandsteinen. - 3.5 Ganggefolgschaft des Hornillos-Komplexes. - 3.5.1 Leukokrate Gänge. - 3.5.2 Mesokrate Gänge. - 3.5.3 Melanokrate Gänge. - 3.6 Zusammenfassung der petrographischen Untersuchungs-Ergebnisse. - 3. 7 Metallogenetische Aspekte. - 3.7.1 Blei-Uran-Thorium-Vererzungen. - 3.7.2 Eisenoxid-Gänge. - 3.7.3 Sulfid-Schwerspat-Gänge. - 3.7.4 Seifengold. - 4 Geochemie des Hornillos-Komplexe. - 4.1 Hauptelemente. - 4.2 Spurenelementverteilung. - 4.2.1 Salische Gesteine. - 4.2.2 Mafische Gesteine. - 4.3 Verteilung der Seltenen Erden (SEE). - 4.4 Geotektonische Position aufgrund von Diskriminierungs-Diagrammen. - 5 Gang-Schwarm von Maiguasi. - 5.1 Allgemeines über Lamprophyre. - 5.2 Die Lamprophyre aus dem Gebiet von Maiguasi. - 5.2.1 Petrographie der Lamprophyre. - 5.2.2 Geochemie der Lamprophyre. - 5.3 Die Tinguaite aus dem Gebiet von Maiguasi (Tinguaftas de lruya). - 5.4 Geochemischer und petrogenetischer Zusammenhang zwischen Lamprophyren und Tinguaiten. - 6 Fenitisierungserscheinungen im Rejará-Granodiorit (S-Bolivien). - 6.1 Einleitung. - 6.2 Granodiorit. - 6.3 Episyenite. - 6.4 Geochemie des Granodiorites und Episyenites. - 6.5 Dolerit-Gänge. - 6.6 Fenitisierung. - 6.7 Ultramafische Lamprophyre (Aillikite). - 6.8 Diskussion. - 7 Kohlenstoff- und Sauerstoffisotopie. - 7.1 Datenermittlung. - 7.2 Sauerstoffisotopie. - 7.3 Kohlenstoffisotopie. - 7.4 Verhältnis zwischen Sauerstoff- und Kohlenstoff-lsotopen. - 7.5 Diskussion und Ergebnisse der Untersuchungen. - 8 Schlußfolgerungen und Ausblick. - 8.1 Ergebnisse und Schlußfolgerung. - 8.2 Diskussion. - 8.3 Modell zum Alkalimagmatismus in der Ostkordillere. - 8.4 Ausblick. - Literaturverzeichnis. - Anhangverzeichnis (Tabellen und Karten). -
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  • 5
    Monograph available for loan
    Monograph available for loan
    New York : American Institute of Physics
    Call number: M 99.0571 ; M 98.0040 ; PIK N 455-02-0368 ; AWI A3-92-0463
    Type of Medium: Monograph available for loan
    Pages: xxxix, 520 Seiten , Illustrationen
    ISBN: 0883187124
    Classification:
    Meteorology and Climatology
    Language: English
    Note: Contents: Foreword. - Preface. - Acknowledgements. - List of symbols and definitions. - 1. Introduction. - 2. Nature of the problem. - 3. Basic equations for the atmosphere and oceans. - 4. Various decompositions of the circulation. - 5. The data. - 6. Radiation balance. - 7. Observed mean state of the atmosphere. - 8. Observed mean state of the oceans. - 9. Observed mean state of the cryosphere. - 10. Exchange processes between the earth's surface and the atmosphere. - 11. Angular momentum cycle. - 12. Water Cycle. - 13. Energetics. - 14. The ocean-atmosphere heat engine. - 15. Entropy in the climate system. - 16 Interannual and interdecadal variability in the climate system. - 17. Mathematical simulation of climate. - Appendix A: Analysis in terms of Fourier components. - Appendix B: Analysis in terms of empirical orthogonal functions (EOF's). - References. - Name index. - Subject index.
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  • 6
    Call number: AWI G2-15-0023
    In: Coastal and estuarine studies, 40
    Type of Medium: Monograph available for loan
    Pages: XV, 647 S. : Ill., zahlr. graph. Darst., Kt.
    ISBN: 0875902545
    Series Statement: Coastal and estuarine studies 40
    Language: English
    Note: Contents: Acknowledgement. - Contributors List. - PART I. INTRODUCTION. - Introduction / D. Prandle. - PART II. BAROCLINIC DYNAMICS. - The influence of coastally trapped waves on the circulation in Jervis Bay, New South Wales / P. D. Craig and P. E. Holloway. - Tidal mixing near the sill of a Scottish sea loch / A. J. Elliott, P. A. Gillibrand and W. R. Turrell. - A topographically induced internal wave and mixing in the Tamar Estuary / D. R. Sturley and K. R. Dyer. - Turbulence and shear induced mixing processes in estuaries / E. J. Derbyshire & J. R. West. - Dynamically-active models in the prediction of estuarine stratification / J. H. Simpson and J. Sharples. - PART III. CIRCULATION. - Circulation Residual flow in Naples Bay and its effect on constituent concentration, constituent flux and residence time / J. Van de Kreeke. - The stratified hydrodynamics of the Palmiet - a prototypical bar-built estuary / J. L. Largier, J. H. Slinger and S. Talijaard. - Salinity structure of a shallow, tributary estuary / W. W. Schroeder, S. P. Dinnel and W. J. Wiseman Jr. - On meteorologically induced subtidal motion in Hangzhou Bay / J. L. Su and W. Chen. - Water level fluctuations in the Atchafalaya Delta, Louisiana: tidal forcing versus river forcing / E. M. Swenson and C. E. Sasser. - Modelling of low-frequency salinity variations in the St. Lawrence Estuary / K. T. Tee. - On the estuatine circulation within the Kattegat / N. Winkel-Steinberg, J. O. Backhaus and T. Pohlmann. - PART IV. SEDIMENTATION. - Sedimentation Observations of fine-sediment concentrations and transport in the turbidity maximum region of an estuary / R. J. Uncles, J. A. Stephens and M. L. Barton. - Velocity asymmetries in frictionally-dominated tidal embayments: longitudinal and lateral variability / C. T. Friedrichs, D. R. Lynch and D. G. Aubrey. - Effects of sea-level rise on muddy coastal margins / R. Kirby. - Acoustic measurements of suspended sediment over sandwaves / P. D. Thome, R. L. Soulsby and P. J. Hardcastle. - Some observations on fluid mud response to water waves / F. Jiang and A. J. Mehta. - The reflection of waves off beaches / J. Darbyshire. - PART V. MODELLING (SEDIMENT). - Dispersion in tidally-averaged transport equation / R. T. Cheng and V. Casulli. - Effect of bends on dilution rates / R. Smith. - Modelling the vertical distribution of suspended sediment in combined wave-current flow / A. G. Davies. - Some considerations on mathematical modelling of morphological processes in tidal regions / Z. B. Wang. - A three-dimensional transport model for dissolved and suspended matter in estuaries and coastal seas / G. C. van Dam and R. A. Louwersheimer. - An estuatine and coastal sand transport model / B. A. O'Connor and J. Nicholson. - PART VI. APPLIED STUDIES. - Current and density structure in the Netherlands coastal zone / W. P. M. de Ruijter, A. van der Giessen and F. C. Groenendijk. - On the distribution of suspended matter and the density driven circulation in the Dutch coastal area / M. Visser. - Coastal dynamics along a rugged coastline / B. King and E. Wolanski. - Transport of hypoxic waters: an estuary-subestuary exchange / A. Y. Kuo and K. Park. - Interdisciplinary study on the tidal front in the Bungo Channel, Japan / T. Yanagi, O. Matsuda, S. Tanabe and S. Uye. - Hydrodynamic modelling for a tidal power project / T. L. Shaw.
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  • 7
    Call number: M 92.0753 ; AWI G6-92-0394
    Description / Table of Contents: This volume summarizes the main results of a priority programme of the Deutsche Forschungsgemeinschaft (DFG), Bonn-Bad Godesberg
    Type of Medium: Monograph available for loan
    Pages: XXIX, 544 Seiten , Illustrationen
    ISBN: 3-540-54034-2 , 0-387-54034-2
    Classification:
    Geochemistry
    Language: English
    Note: Contents 1 Scope / G. Matthess 2 Polar Organic Substances and Their Role in the Water-Saturated and -Unsaturated Zones 2.0 Introduction / F.H. Frimmel 2.1 Isolation Procedures and Characterization Methods 2.1.1 Isolation and General Characterization of Organic Acids from Pore Water / F.H. Frimmel 2.1.2 Isolation and Characterization of Soil Humic Matter / W. Finger, B. Post and H. Klamberg 2.1.3 Isolation and Characterization of Organic Substancesin Ground Water and Sediments / F. Selenka and A. Hack 2.1.4 Chromatographie Characterization of the Acid-Soluble Part of Humic Substances / F.H. Frimmel 2.1.5 Spectroscopic Characterization of Humic Substances in the Ultraviolet and Visible Region and by Infrared Spectroscopy / G. Abbt-Braun 2.1.6 Temperature-Programmed/Time-Resolved Pyrolysis Field lonization Mass Spectrometry - a New Method for the Characterization of Humic Substances / H.-R. Schulten 2.1.7 Interpretation of the Pyrolysis Products of Isolated Humic and Fulvic Acids / G. Abbt-Braun 2.1.8 Characterization of Isolated Humic Material by 13C Nuclear Magnetic Resonance Spectroscopy /J. Buddrus and P. Burba 2.1.9 Characterization of Humic Substances Extracted by Organic Solvents / B. Post and H. Klamberg 2.2 Interaction of Inorganics with Humic Substances 2.2.1 Investigation of Metal Complexation by Polarography and Fluorescence Spectroscopy / F.H. Frimmel 2.2.2 Determination of Complexation Equilibria by the Ion-Exchange Method / W. Finger and H. Klamberg 2.2.3 Sorption of Metals on Humic Material / R. Becker and H. Klamberg 2.2.4 Interactions of Humic Substances with Iodine / K. G. Heumann and C. Reifenhäuser 2.2.5 Experiments on the Influence of Organic Ligands upon Kinetics of Feldspar Weathering / A. Petersen, G. Matthess and D. Schenk 2.3 Characterization of Some Organic Acids in the Subsurface of the Sandhausen Ecosystem / T. Cordt and H. Kussmaul 2.3.4 Organic Acids 2.3.5 Conclusions 3 Carbonate Systems 3.0 Introduction / E. Usdowski 3.1 Dissolution Kinetics in the Generation of Carbonate Ground Waters 3.1.1 Theoretical and Experimental Results of the Kinetics of Calcite Dissolution and Precipitation / W. Dreybrodt 3.1.2 Field Measurements and Laboratory Experiments on Calcite Dissolution Kinetics of Natural Porous Media / J. Baumann and H.D. Schulz 3.2 Field Studies on Subsurface Water of Selected Sites / B. Merkel and J. Grossmann 3.2.1 Pore Water Sampling in Carbonate Terrains 3.2.2 Variation of Inorganic Carbon in the Unsaturated Zone of a Carbonate Gravel System / L. Eichinger and B. Merkel 3.2.3 Isotope Geochemistry of the Subsurface Carbonate System in Sandhausen and Bocholt / H. Dörr, W. Leuchs, P. Obermann, W. Regenberg and C. Sonntag 3.2.4 Application of Stable Carbon and Sulfur Isotope Models to the Development of Ground Water in a Limestone-Dolomite-Anhydrite-Gypsum Area / K.W. Schaefer and E. Usdowski 3.2.5 A dissolution Front at the Contact of Sandsto Marly Limestone Aquifers / H.R. Langguth and R. Schulz 3.2.6 Carbonate Rock Dissolution Under Intermediate System Conditions / J. Michaelis 3.3 Alteration in Karst Systems 3.3.1 Mineralogy and Hydrogeochemistry of the Gypsum Karst of Foum Tatahouine, South Tunisia / W. Smykatz-Kloss, H. Hötzl and H. Kössl 3.3.2 Dedolomitization and Salt Formationin a Semi-Arid Environment / W. Smykatz-Kloss, and J. Goebelbecker 3.3.3 Transformation Processes in Paleokarst Sediments and Chemistry of Modern Waters in the Aladag Region, Turkey / M. Cevrini and W. Echle 4 Silicate Systems 4.0 Introduction / G. Matthess 4.1 Redox Reactions in the Subsurface 4.1.1 Anoxic Reaction Zones in an Aquifer Influenced by Increasing Nitrate and Sulfate Contents / W. Leuchs and P. Obermann 4.1.2 Nitrogen and Oxygen Isotopes as Indicators for Nitrification and Denitrification / H.-L. Schmidt, S. Voerkelius and A. Amberger 4.1.3 Redox Conditions and Microbial Sulfur Reactions in the Fuhrberger Field Sandy Aquifer / J. Böttcher, O. Strebet and W. Kölle 4.1.4 Influence of Fine-Grained Cover Beds on the Chemistry of Shallow Ground Water / G. Ebhardt and P. Fritsch 4.1.5 Hydrogeochemical Processes During the Passage of Surface Water and Ground Water Through Genetically Different Organic Sediments / H. Brühl, A. Moschick and H. Verleger 4.1.6 Hydrochemical Phenomena in the Dorsten Leakage System / M. Hoffmann, H.R. Langguth and J. Larue 4.1.7 Hydrogeochemical Processes in the Hamburg Deep Aquifer System / E.P. Loehnert, W. Bauhus and C. Sonntag 4.2 Rock-Water Interaction 4.2.1 Aluminium Speciation in Acid Soil Water and Ground Water / G. Dietze and B. Ulrich 4.2.2 Mineral-Pore Water Interaction in Two Soil Types on Pleistocene Sediments at Hamburg / F. Sztuka and I. Valeton 4.2.3 Subsurface Hydrochemical Reactions in the Sandhausen Forest Ecosystem / H. Jacob, W. Regenberg and C. Sonntag 4.3 Reaction Kinetics 4.3.1 Experimental Methods for Determining Dissolution Rates of Silicates - a Comparison / D. Schenk, G. Matthess, A. Dahmke and A. Petersen 4.3.2 Field Studies on the Kinetics of Silicate Minerals/Water Interaction / G. Matthess, A. Petersen, D. Schenk and A. Dahmke 5 Microbiology 5.0 Introduction / P. Hirsch 5.1 Characterization of the Natural Subsurface Environment 5.1.1 Morphological and Taxonomic Diversity of Ground Water Microorganisms / P. Hirsch, E. Rades-Rohkohl, J. Kölbel-Boelke and A. Nehrkorn 5.1.2 Methods of Studying Ground Water Microbiology: Critical Evaluations and Method suggestions / P. Hirsch, E. Rades-Rohkohl, J. Kölbel-Boelke, A. Nehrkorn, R. Schweisfurth, F. Selenka and A. Hack 5.1.3 Organic Substances in Ground Water and Sediments and Their Relationships to Microorganisms in a Sandy Aquifer / E Selenka and A. Hack 5.2 Microbial Activities 5.2.1 Observations on the Physiology of Microorganisms from Pristine Ground Water Environments / P. Hirsch 5.2.2 Formation and Transformation of Manganese Oxidation States by Bacteria / J. Gottfreund and R. Schweisfurth 5.2.3 Interactions Between Humic Acids and Microorganisms / G.-J. Tuschewitzki, B. Langer and H. Otremba 5.3 Microbiology of Selected Locations 5.3.1 Subsurface Microbial Activities in the Sandhausen Forest Ecosystem / R. Weyandt and R. Schweisfurth 5.3.2 Heterotrophic Bacterial Communities in the Bocholt Aquifer System / J. Kölbel-Boelke and A. Nehrkorn 5.3.3 The Natural Microflora of the Segeberger Forest Aquifer System / P. Hirsch and E. Rades-Rohkohl 5.3.4 Microbiological Observations of the Unsaturated Zone of a Quaternary Gravel Profile / I. Alexander, G. Freitag, J. Grossmann, Β. Merkel, P. Udluft and I. Ullsperger 6 Hydrogeochemical and Geochemical-Hydraulic Models and Model Concepts 6.0 Introduction / H.-D. Schulz 6.1 Hydrogeochemical Models and Concepts 6.1.1 Development of Secondary Permeability of a Fracture Aquifer in Carbonate Rocks: a Model / W. Dreybrodt 6.1.2 Some Aspects of Modelling the Carbon System in the Unsaturated Zone / B. Merkel, L. Eichinger and P. Udluft 6.1.3 Methodical Concepts in Silicate-Water Interaction - a Comparison of Results / A. Dahmke, G. Matthess, A. Petersen and D. Schenk 6.2 Combination of Transport and Geochemical Reactions 6.2.1 Water Movement and Geochemical Reactions in the Unsaturated Zone of Sands with Low Calcite Contents / H.-D. Schulz 6.2.2 Physical and Biochemical Processes Affecting Mass Transport in the Bocholt Aquifer System / C. Bugner and R. Mull 6.2.3 Tritium and 3He Measurements as Calibration Data for Ground Water Transport Models / H. Dörr, P. Schlosser, M. Stute and C. Sonntag 6.2.4 39Ar-, 85Kr-, 3He- and 3H Isotope Dating of Ground Water in the Bocholt and Segeberger Forst Aquifer Systems / M. Forster, H. Loosli and S. Weise 6.2.5 Modelling of Mass Balance and of Microbial Transformations in the Fuhrberger Feld Sandy Aquifer / O. Strebet, J. Böttcher and W.H.M. Duynisveld 6.3 Description of Geochemical Environments with Thermodynamic Equilibrium Models / M. Rolling and H.-D. Schulz 6
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  • 8
    Call number: 12/M 93.0473 ; 12/M 92.1243 ; AWI G6-93-0058 ; AWI G6-05-0111
    In: NATO ASI Series
    Type of Medium: Monograph available for loan
    Pages: XIV, 344 S. , Ill. , 24 cm
    ISBN: 3540531238
    Series Statement: NATO ASI series : I, Global and environmental change 2
    Classification:
    Historical Geology
    Language: English
    Note: Table of Contents: Prologue. - List of authors and participants. - I. RADIOCARBON AND ABSOLUTE CHRONOLOGIES. - Tree-ring 14C calibration at 10.000 BP / B. Kromer and B. Becker. - On flow model dating of stable isotope records from Greenland ice cores 7 S. J. Johnsen and W. Dansgaard. - The clay-varve based Swedish time scale and its relation to the Late Weichselian radiocarbon chronology / S. björck, I. Cato, L. Brunnberg, B. Strömberg. - A step towards an absolute time-scale for the Late-Glacial: annually laminated sediments from Soppensee (Switzerland) / A. F. Lotter. - B. Ammann, J. Beer, I. Hajdas, M. Sturm. - The late glacial-holocene transition in central Europe derived from isotope studies of laminated sediments from Lake Gościaź (Poland) / K. Rozanski, T. Goslar, M. Dulinski, T. Kuc, M. F. Pazdur, A. Walanus. - Younger Dryas oscillation - varve dated microstratigraphic, palynological and palaeomagnetic records from Lake Holzmaar, Germany / B. Zolitschka, B. Haverkamp, J. F. W. Negendank. - 230Th/234U and 14C ages obtained by mass spectrometry on corals from Barbados (West Indies), Isabela (Galapagos) and Mururoa (French Polynesia) / E. Bard, R. G. Fairbanks, M. Arnold, B. Hamelin. - II. COSMONUCLIDE PRODUCTION CHANGES DURING THE PAST. - Expected secular variations in the global terrestrial production rate of radiocarbon / D. Lal. - 10Be deposition at Vostok, Antarctica, during the last 50,000 years and its relationship to possible cosmogenic production variations during this period / G. M. Raisbeck, F. Yiou, J. Jouzel, J. R. Petit, N. I. Barkov, E. Bard. - 10Be peaks as time markers in polar ice cores / J. Beer, S. J. Johnsen, G. Bonani, R. C. Finkel, C. C. Langway, H. Oeschger, B. Stauffer, M. Suter, W. Woelfli. - Variation of geomagnetic field intensity from 8-60 Ky BP, Massif Central France / J. Salis and N. Bonhommet. - A geomagnetic calibration of the radiocarbon time-scale / A. Mazaud, C. Laj, E. Bard, M. Arnold, E. Tric. - III. CLIMATIC CHANGES DURING THE LAST DEGLACIATION. - The strength of the nordic heat pump / W. S. Broecker. - δ18O time-slice reconstruction of meltwater anomalies at Termination 1 in the North Atlantic between 50 and 80°N / M. Sarnthein, E. Jansen, M. Arnold, J. C. Duplessy, H. Erlenkeuser, A. Flatoy, T. Veum, E. Vogelsang, M. S. Weinelt. - A new method to reconstruct sea surface salinity: application to the North Atlantic ocean during the Younger Dryas / J.-C. Duplessy, L. Labeyrie, A. Juillet-Leclerc, J. Duprat. - The determination of past ocean-atmosphere radiocarbon differences / J. R. Southon, D. E. Nelson, J. S. Vogel. - The last deglaciation in Antarctica: further evidence of a "Younger Dryas" type climatic event / J. Jouzel, J. R. Petit, N. I. Barkov, J. M. Barnola, J. Chappellaz, P. Ciais, V. M. Kotkyakov, C. Lorius, V. N. Petrov, D. Raynaud, C. Ritz. - Possible ice-core evidence for a fresh melt water cap over the Atlantic ocean in the early Holocene / D. A. Fisher. - Climatic changes in Northwest Africa during the last deglaciation (16-7 ka BP) / F. Gasse, J. Ch. Fontes. - The palynological expression and timing of the Younger Dryas event - Europe versus Eastern North America / D. M. Peteet.
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  • 9
    Call number: AWI G5-17-90632
    In: Developments in paleoenvironmental research, 20
    Description / Table of Contents: The aim of this edited volume is to introduce the scientific community to paleoenvironmental studies of estuaries, to highlight the types of information that can be obtained from such studies, and to promote the use of paleoenvironmental studies in estuarine management. Readers will learn about the the application of different paleoecological approaches used in estuaries that develop our understanding of their response to natural and human influences. Particular attention is given to the essential steps required for undertaking a paleoecological study, in particular with regard to site selection, core extraction and chronological techniques, followed by the range of indicators that can be used. A series of case studies are discussed in the book to demonstrate how paleoecological studies can be used to address key questions, and to sustainably manage these important coastal environments in the future. This book will appeal to professional scientists interested in estuarine studies and/or paleoenvironmental research, as well as estuarine managers who are interested in the incorporation of paleoenvironmental research into their management programs.
    Type of Medium: Monograph available for loan
    Pages: ix, 700 Seiten , Illustrationen
    ISBN: 978-94-024-0988-8
    Series Statement: Developments in paleoenvironmental research 20
    Language: English
    Note: Contents: 1 Introduction to the Application of Paleoecological Techniques in Estuaries / Kathryn H. Taffs, Krystyna M. Saunders, Kaarina Weckström, Peter A. Gell, and C. Gregory Skilbeck. - PART I ESTARIES AND THEIR MANAGEMENT. - 2 Estuary Form and Function: Implications for Palaeoecological Studies / Peter Scanes, Angus Ferguson, and Jaimie Potts. - 3 Geology and Sedimentary History of Modern Estuaries / C. Gregory Skilbeck, Andrew D. Heap, and Colin D. Woodroffe. - 4 Paleoecological Evidence for Variability and Change in Estuaries: Insights for Management / Krystyna M. Saunders and Peter A. Gell. - PART II CORING AND DATING OF ESTUARINE SEDIMENTS. - 5 Sediment Sampling in Estuaries: Site Selection and Sampling Techniques / C. Gregory Skilbeck, Stacey Trevathan-Tackett, Pemika Apichanangkool, and Peter I. Macreadie. - 6 Some Practical Considerations Regarding the Application of 210Pb and 137Cs Dating to Estuarine Sediments / Thorbjoern Joest Andersen. - 7 Radiocarbon Dating in Estuarine Environments / Jesper Olsen, Philippa Ascough, Bryan C. Lougheed, and Peter Rasmussen. - PART III TECHNIQUES FOR PALAEOENVIRONMENTAL RECONSTRUCTIONS IN ESTUARINES. - 8 Lipid Biomarkers as Organic Geochemical Proxies for the Paleoenvironmental Reconstruction of Estuarine Environments / John K. Volkman and Rienk H. Smittenberg. - 9 C/N ratios and Carbon Isotope Composition of Organic Matter in Estuarine Environments / Melanie J. Leng and Jonathan P. Lewis. - 10 Physical and Chemical Factors to Consider when Studying Historical Contamination and Pollution in Estuaries / Amanda Reichelt-Brushett, Malcolm Clark, and Gavin Birch. - 11 Diatoms as Indicators of Environmental Change in Estuaries / Kathryn H. Taffs, Krystyna M. Saunders, and Brendan Logan. - 12 Dinoflagellate Cysts as Proxies for Holocene Environmental Change in Estuaries: Diversity, Abundance and Morphology / Marianne Ellegaard, Barrie Dale, Kenneth N. Mertens, Vera Pospelova, and Sofia Ribeiro. - 13 Applications of Foraminifera, Testate Amoebae and Tintinnids in Estuarine Palaeoecology / Anupam Ghosh and Helena L. Filipsson. - 14 Ostracods as Recorders of Palaeoenvironmental Change in Estuaries / Jessica M. Reeves. - 15 Application of Molluscan Analyses to the Reconstruction of Past Environmental Conditions in Estuaries / G. Lynn Wingard and Donna Surge. - 16 Corals in Estuarine Environments: Their Response to Environmental Changes and Application in Reconstructing Past Environmental Variability / Francisca Staines-Urías. - 17 Inferring Environmental Change in Estuaries from Plant Macrofossils / John Tibby and Carl D. Sayer. - 18 Applications of Pollen Analysis in Estuarine Systems / Joanna C. Ellison. - PART IV CASE STUDIES. - 19 Palaeo-Environmental Approaches to Reconstructing Sea Level Changes in Estuaries / Brigid V. Morrison and Joanna C. Ellison. - 20 Paleoecology Studies in Chesapeake Bay: A Model System for Understanding Interactions between Climate, Anthropogenic Activities and the Environment / Elizabeth A. Canuel, Grace S. Brush, Thomas M. Cronin, Rowan Lockwood, and Andrew R. Zimmerman. - 21 Paleosalinity Changes in the Río de la Plata Estuary and on the Adjacent Uruguayan Continental Shelf over the Past 1200 Years: An Approach Using Diatoms as a Proxy / Laura Perez, Felipe García-Rodríguez, and Till J.J. Hanebuth. - 22 Application of Paleoecology to Ecosystem Restoration: A Case Study from South Florida’s Estuaries / G. Lynn Wingard. - 23 Paleolimnological History of the Coorong: Identifying the Natural Ecological Character of a Ramsar Wetland in Crisis / Peter A. Gell. - 24 Palaeoenvironmental History of the Baltic Sea: One of the Largest Brackish-water Ecosystems in the World / Kaarina Weckström, Jonathan P. Lewis, Elinor Andrén, Marianne Ellegaard, Peter Rasmussen, and Richard Telford. - Glossary. - Index
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  • 10
    Monograph available for loan
    Monograph available for loan
    Boca Raton : CRC Press
    Call number: AWI G7-17-91080
    Type of Medium: Monograph available for loan
    Pages: xliv, 382 Seiten , Illustrationen, Diagramme, Karten
    ISBN: 9781482234404
    Language: English
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  • 11
    Monograph available for loan
    Monograph available for loan
    Chichester, UK : John Wiley & Sons
    Call number: AWI A4-18-91479
    Type of Medium: Monograph available for loan
    Pages: xii, 652 Seiten , Illustrationen, graphische Darstellungen, Karten
    Edition: Third edition
    ISBN: 1118778383 (print) , 9781118778388 (print) , 1118778375 (print) , 9781118778371 (print) , 1118778359 (print) , 9781118778357 (print)
    Language: English
    Note: Contents: List of contributors. - Preface. - 1 Overview of sea ice growth and properties / Chris Petrich & Hajo Eicken. - 2 Sea ice thickness distribution / Christian Haas. - 3 Snow in the sea-ice system : friend or foe? / Matthew Sturm & Robert A. Massom. - 4 Sea ice and sunlight / Donald K. Perovich. - 5 The sea ice-ocean boundary layer / Miles G. McPhee. - 6 The atmosphere over sea ice / Ola Persson & Timo Vihma. - 7 Sea ice and arctic ocean oceanography / Finlo Cottier, Mike Steele & Frank Nielsen. - 8 Oceanography and sea ice in the southern ocean / Michael P. Meredith & Mark A. Brandon. - 9 Methods of satellite remote sensing of sea ice / Gunnar Spreen & Stefan Kern. - 10 Gaining (and losing) antarctic sea ice : variability, trends and mechanisms / Sharon Stammerjohn & Ted Maksym. - 11 Losing arctic sea ice : observations of the recent decline and the long-term context / Walt N. Meier. - 12 Sea ice in earth system models / Dirk Notz & Cecilia M. Bitz. - 13 Sea ice as a habitat for bacteria, archaea and viruses / Jody W. Deming & R. Eric Collins. - 14 Sea ice as a habitat for primary producers / Kevin R. Arrigo. - 15 Sea ice as a habitat for micrograzers / David A. Caron, Rebecca J. Gast & Marie-Eve Garneau. - 16 Sea ice as a habitat for macrograzers / Bodil A. Bluhm, Kerrie M. Swadling & Rolf Gradinger. - 17 Nutrients, dissolved organic matter and exopolymers in sea ice / Klaus M. Meiners & Christine Michel. - 18 Gases in sea ice / Jean-Louis Tison, Bruno Delille & Stathys Papadimitriou. - 19 Transport and transformation of contaminants in sea ice / Feiyue Wang, Monika Pucko & Gary Stern. - 20 Numerical models of sea ice biogeochemistry / Martin Vancoppenolla & Letizia Tedesco. - 21 Arctic marine mammals and sea ice / Kristin L. Laidre & Eric V. Regehr. - 22 Antarctic marine mammals and sea ice / Marthán N. Bester, Horst Bornemann & Trevor McIntyre. - 23 A feathered perspective : the influence of sea ice on arctic marine birds / Nina J. Karnovsky & Maria V. Gavrilo. - 24 Birds and antarctic sea ice / David Ainley, Eric J. Woehler & Amelie Lescroel. - 25 Sea ice is our beautiful garden : indigenous perspectives on sea ice of sea ice in the arctic / Henry P. Huntington, Shari Gearheard, Lene Kielsen Holm, George Noongwook, Margaret Opie & Joelie Sanguya. - 26 Advances in palaeo sea-ice estimation / Leanne Armand, Alexander Ferry & Amy Leventer. - 27 Ice in subarctic seas / Hermanni Kaartokallio, Mats A. Granskog, Harri Kuosa & Jouni Vainio. - Index.
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  • 12
    Call number: AWI Bio-20-93988
    Type of Medium: Dissertations
    Pages: x, 181 Seiten , Illustrationen, Diagramme
    Language: English
    Note: Dissertation, Universität Potsdam, 2017 , Contents Abstract Kurzfassung Contents 1. List of figures 2. List of tables Chapter 1. General introduction 1. Motivation 2. Scientific background 3. Objectives of the thesis 4. Thesis outline Chapter 2. Manuscript 1: Treeline dynamics in Siberia under changing climates as inferred from an individual-based model for Larix 1. Abstract 2. Introduction 3. Material and Methods 4. Results 5. Discussion 6. Acknowledgements Chapter 3. Manuscript 2: Field and simulation data reveal dissimilar responses of Larix gmelinii stands to increasing temperature across the Siberian treeline ecotone 1. Abstract 2. Introduction 3. Methods 4. Results 5. Discussion 6. Acknowledgements Chapter 4. Manuscript 3: High gene flow and complex treeline dynamics on the Taymyr Peninsula (north-central Siberia), revealed by nuclear microsatellites of Larix 1. Abstract 2. Introduction 3. Materials and methods 4. Results 5. Discussion 6. Acknowledgements Chapter 5. Manuscript 4: Dispersal distances at treeline in Siberia - genetic guided model improvement 1. Abstract 2. Introduction 3. Methods 4. Results 5. Discussion 6. Acknowledgements Chapter 6. Synopsis 1. Towards a better understanding of Siberian treeline dynamics 2. Methodological challenges to reconstruct and predict the treeline advance 3. Conclusions 4. Outlook Appendix 1. Supplementary information for manuscript 1 (Chapter 2) 2. Supplementary information for manuscript 2 (Chapter 3) 3. Supplementary information for manuscript 3 (Chapter 4) 4. Supplementary information for manuscript 4 (Chapter 5) Bibliography Acknowledgements - Danksagung Declaration
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  • 13
    Monograph available for loan
    Monograph available for loan
    Cambridge [u.a.] : Cambridge Univ. Press
    Associated volumes
    Call number: AWI E3-92-0498
    In: Studies in Polar research
    Description / Table of Contents: Antarctica has long provided scientists with a unique window for the observation of the natural world. Most recently, atmospheric and other studies have provided valuable indicators of the possible effects of humankind's activities on the global environment, promoting the continent to a key position in the study of natural global systems and our potential to affect them. This book is the first to describe the development of scientific activity in the Antarctic (as distinct from exploration) in all its aspects. Coverage spans three centuries, starting with Halley who laid the foundations of geophysics which was to be the principal driving force behind Antarctic science for most of its history. Although early researchers built up a picture of the main features of the Antarctic environment, the idea of science specific to the continent emerged only later. As the main disciplines of oceanography, earth sciences, the sciences of atmosphere and geospace, terrestrial biology, medicine, and conservation developed, the clear interactions between them within an Antarctic context led to the emergence of the holistic view of Antarctic science which we hold today. For anyone with an interest in the history, conservation or politics of this special part of the world, or in the history of the development of science, this book will provide a mine of information and will act as a rich source of reference for many years to come.
    Type of Medium: Monograph available for loan
    Pages: XXI, 483 Seiten , Illustrationen
    Edition: First published
    ISBN: 0521361133
    Series Statement: Studies in Polar research
    Language: English
    Note: Contents Foreword by the Rt. Hon. Margaret Thatcher, OM, PC, FRS Preface A note for the reader 1 Introduction Endnote 2 The science of the early explorations 2.1 The scientific and technological background 2.2 Edmond Halley 2.3 Terra Australis lncognita and the theoretical geographers 2.4 The voyages of James Cook 2.5 The voyage of Thaddeus Bellingshausen 2.6 Explorations by sealers 2. 7 William Scores by: pioneer polar scientist Endnotes 3 The national expeditions of 1828 to 1843 3.1 The scientific and social background 3.2 The United States exploring expedition 3.3 The French expedition 3.4 Geodesy and the visit of HMS Chanticleer to Deception Island 3.5 'The magnetic crusade' 3.6 The Antarctic voyage of HMS Erebus and HMS Terror 3.7 Comment on the mid-nineteenth century expeditions Endnotes 4 Averted interest and consolidation 4.1 The mid-nineteenth century view of Antarctica 4.2 Maury's campaign for an expedition south 4.3 The rise of oceanography and Challenger's incursion into Antarctic waters 4.4 Neumayer and the growth of German interest in the Antarctic 4.5 Weyprecht and the First International Polar Year 4.6 Reconnaissances by whalers 4.7 Growing interest among scientists 4.8 The voyages of the Belgica, Valdivia and Southern Cross 4.9 Naval tradition versus science: the Discovery expedition 4.10 The Gauss expedition 4.11 The Antarctica expedition 4.12 Scientific expeditions in the first quarter of the twentieth century 4.13 The coming-of-age of Antarctic science Endnotes 5 The modern period - logistics and materiel 5.1 The inter-related growth of science and technology 5.2 Development of organization: the polar institutes 5.3 The Byrd expeditions and the general introduction of technology 5.3.1 Ships 5.3.2 Electrical communication 5.3.3 Mechanized surface transport 5.3.4 Aircraft 5.3.5 Aerial photography 5.3.6 Laboratories 5.3.7 Techniques for living 5.4 Post-Second World War developments 5.5 Developments following the International Geophysical Year 5.6 Ships in the modern period 5.7 Building technology 5.8 The advent of satellites 5.9 The impact of equality of the sexes Endnotes 6 The modern period - the involvement with politics 6.1 The dependence of Antarctic science on public money 6.2 Regulating of whaling and Antarctic research 6.3 Nationalistic and imperialistic influences up to the Second World War 6.4 The Antarctic in the Second World War 6.5 The Falkland Islands Dependencies Survey 6.6 The assertion of American interest 6.7 The growing problems arising from territorial claims 6.8 The International Geophysical Year 6.9 The Antarctic Treaty 6.10 The Scientific Committee for Antarctic Research 6.11 National Antarctic research organizations and operations 6.12 Private expeditions 6.13 The politics of conservation 6.14 The problems of emergencies Endnotes 7 The sciences of the Antarctic seas 7.1 The scope of the chapter 7.2 Physical oceanography at the beginning of the twentieth century 7.3 Marine biology and biological oceanography in the early twentieth century 7.4 The inter-war period and the Discovery Investigations 7.5 The impact of the Second World War on oceanography 7.6 Marine biology in the immediate post-Second World War years 7.7 Physical oceanography in the modern period: the advent of remote sensing 7.8 Studies on sea-ice and icebergs 7.9 Biological oceanography: productivity and the pelagic ecosystem 7.10 BIOMASS 7.11 Inshore marine biology Endnotes 8 The earth sciences 8.1 The geological outlook at the beginning of the twentieth century 8.2 Geological reconnaissance 8.3 Geology during and after the IGY: the dry valleys 8.4 The continental drift theory and the tectonic structure of Antarctica 8.5 The ice-cap and the land underneath it 8.6 Glaciology 8.7 Climatic history and the records in ice-cores 8.8 Meteorites on the ice-sheet 8.9 Denudation processes 8.10 Soil 8.11 Physical limnology 8.12 The wider role of geologists in Antarctica Endnotes 9 The sciences of atmosphere and geospace 9.1 The atmospheric sciences at the end of the nineteenth century 9.2 Heroic age meteorology 2 9.3 Meteorology from 1920 until the IGY 9.4 Meteorology during IGY 9.5 Post-IGY meteorology 9.6 Atmospheric chemistry: ozone 9.7 Energy balance and modelling 9.8 The beginnings of study of the upper atmosphere 9.9 The concept of geospace 9.10 Ionospherics up to the IGY 9.11 Ionospherics during the IGY 9.12 Geospace research since the IGY 9.13 Cosmic ray studies and astronomy in the Antarctic Endnotes 10 Land-based biology 10.1 The natural history of the Antarctic 10.2 The development of Antarctic biology 10.3 The physiological ecology of plants 10.4 Invertebrate ecology and physiology 10.5 Microbiology 10.6 Limnology 10.7 Ornithology 10.8 Seal studies 10.9 Conclusions Endnotes 11 Man and the Antarctic environment 11.1 Heroic age medicine 11.2 Medical research before and during the IGY 11.3 Medical and psychological research after the IGY 11.4 The International Biomedical Expedition 11.5 Sledge dog physiology 11.6 Introduced organisms 11.7 Conservation Endnotes 12 Some concluding comments 12.1 The persistent features of Antarctic science 12.2 The contribution to science in general 12.3 Arctic and Antarctic 12.4 Internationalism 12.5 Antarctic science and politics 12.6 The effects ofbureaucracy on Antarctic science 12.7 Science and the humanist view of Antarctica Endnotes 13 Postscript Endnotes References Index
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  • 14
    Series available for loan
    Series available for loan
    Bremerhaven : Alfred-Wegener Inst. für Polar- und Meeresforschung
    Associated volumes
    Call number: ZSP-168-107
    In: Berichte zur Polarforschung
    Type of Medium: Series available for loan
    Pages: 267 S. : Ill., graph. Darst.
    ISSN: 0176-5027
    Series Statement: Berichte zur Polarforschung 107
    Language: English
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  • 15
    Series available for loan
    Series available for loan
    Bremerhaven : Alfred-Wegener Inst. für Polar- und Meeresforschung
    Associated volumes
    Call number: ZSP-168-105
    In: Berichte zur Polarforschung
    Type of Medium: Series available for loan
    Pages: III, 72 S. : Ill., graph. Darst.
    ISSN: 0176-5027
    Series Statement: Berichte zur Polarforschung 105
    Language: English
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  • 16
    Call number: PIK N 456-17-91009 ; AWI A5-18-91009
    In: Geophysical monograph, 226
    Type of Medium: Monograph available for loan
    Pages: XIII, 386 Seiten , Illustrationen, Diagramme, Karten
    ISBN: 1119067847 , 9781119067849
    Series Statement: Geophysical Monograph Series ; 226
    Language: English
    Note: Contents: TITLE PAGE -- COPYRIGHT PAGE -- CONTENTS -- CONTRIBUTORS -- PREFACE -- ACKNOWLEDGMENTS -- PART I FORCINGS OF CLIMATE EXTREMES -- CHAPTER 1 THE CHANGING EL NIÑO-SOUTHERN OSCILLATION AND ASSOCIATED CLIMATE EXTREMES -- 1.1. INTRODUCTION -- 1.2. CHANGES IN ENSO PROPERTIES -- 1.3. CHANGES IN ENSO DYNAMICS -- 1.4. CHANGES IN ENSO TELECONNECTIONS AND ASSOCIATED CLIMATE EXTREMES -- 1.5. ENSO IN THE FUTURE -- 1.6. SUMMARY -- ACKNOWLEDGMENTS -- REFERENCES -- CHAPTER 2 WEATHER EXTREMES LINKED TO INTERACTION OF THE ARCTIC AND MIDLATITUDES -- 2.1. INTRODUCTION -- 2.2. ARCTIC EFFECTS ON MIDLATITUDE EXTREMES -- 2.3. MIDLATITUDE EFFECTS ON ARCTIC EXTREMES -- 2.4. DISCUSSION AND CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- CHAPTER 3 IMPACT OF AEROSOLS ON REGIONAL CHANGES IN CLIMATE EXTREMES -- 3.1. INTRODUCTION -- 3.2. DIRECT AND INDIRECT EFFECTS OF AEROSOLS ON CLOUDS AND RADIATION -- 3.3. AEROSOL IMPACT ON REGIONAL CLIMATE CHANGE -- 3.4. Mitigation scenarios for aerosol emissions -- 3.5. AEROSOL EFFECT ON TEMPERATURE AND PRECIPITATION EXTREMES -- 3.6. FUTURE RESEARCH NEEDS -- ACKNOWLEDGMENTS -- REFERENCES -- CHAPTER 4 WEAKENED FLOW, PERSISTENT CIRCULATION, AND PROLONGED WEATHER EXTREMES IN BOREAL SUMMER -- 4.1. INTRODUCTION -- 4.2. RESONANT CIRCULATION REGIMES -- 4.3. REAL EVENTS -- 4.4. CONCLUSIONS AND DISCUSSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- CHAPTER 5 LAND PROCESSES AS THE FORCING OF EXTREMES: A REVIEW -- 5.1. INTRODUCTION -- 5.2. FORCINGS OF LAND PROCESSES ON CLIMATE EXTREMES -- 5.3. SUMMARY -- ACKNOWLEDGMENTS -- REFERENCES -- PART II PROCESSES OF CLIMATE EXTREMES -- CHAPTER 6 TIMING OF ANTHROPOGENIC EMERGENCE IN CLIMATE EXTREMES -- 6.1. INTRODUCTION -- 6.2. DEFINING TIME OF EMERGENCE -- 6.3. DATA AND METHODS -- 6.4. RESULTS -- 6.5. DISCUSSION -- 6.6. CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES CHAPTER 7 RECENT INCREASES IN EXTREME TEMPERATURE OCCURRENCE OVER LAND -- 7.1. INTRODUCTION -- 7.2. DATA AND METHODOLOGY -- 7.3. RESULTS -- 7.4. CONCLUSIONS -- REFERENCES -- CHAPTER 8 WHY FUTURE SHIFTS IN TROPICAL PRECIPITATION WILL LIKELY BE SMALL: THE LOCATION OF THE TROPICAL RAIN BELT AND THE HEMISPHERIC CONTRAST OF ENERGY INPUT TO THE ATMOSPHERE -- 8.1. INTRODUCTION -- 8.2. THE RELATIONSHIP BETWEEN ITCZ POSITION AND HEMISPHERIC CONTRAST OF ATMOSPHERIC HEATING -- 8.3. RELATIONSHIP BETWEEN THE SEASONAL CYCLE OF ITCZ MIGRATION AND THE ANNUAL MEAN PRECIPITATION DISTRIBUTION -- 8.4. IMPLICATIONS FOR FUTURE ITCZ SHIFTS UNDER GLOBAL WARMING -- REFERENCES -- CHAPTER 9 WEATHER-CLIMATE INTERACTIONS AND MJO INFLUENCES -- 9.1. INTRODUCTION -- 9.2. THE INTERACTIONS BETWEEN THE MJO, BACKGROUND STATE, AND SYNOPTIC WEATHER -- 9.3. A CASE STUDY ON INTERACTIONS BETWEEN THE MADDEN-JULIAN OSCILLATION AND EL NIÑO -- 9.4. INTERACTIONS BETWEEN THE MJO AND BREAKING WAVES -- 9.5. INTERACTIONS BETWEEN THE MJO, TROPICAL CYCLONES, AND THE EXTRATROPICAL CIRCULATION -- 9.6. SUMMARY -- REFERENCES -- CHAPTER 10 RECENT CLIMATE EXTREMES ASSOCIATED WITH THE WEST PACIFIC WARMING MODE -- 10.1. INTRODUCTION -- 10.2. BACKGROUND -- 10.3. DATA AND METHODS -- 10.4. SUMMARY AND DISCUSSION -- REFERENCES -- CHAPTER 11 CONNECTIONS BETWEEN HEAT WAVES AND CIRCUMGLOBAL TELECONNECTION PATTERNS IN THE NORTHERN HEMISPHERE SUMMER -- 11.1. INTRODUCTION -- 11.2. DATA AND METHODS -- 11.3. DISTRIBUTION OF HEAT WAVES -- 11.4. PLANETARY WAVES ASSOCIATED WITH THE HEAT WAVES -- 11.5. SUMMARY AND DISCUSSION -- ACKNOWLEDGMENTS -- REFERENCES -- PART III REGIONAL CLIMATE EXTREMES -- CHAPTER 12 NORTH AMERICAN DROUGHT AND LINKS TO NORTHERN EURASIA: THE ROLE OF STATIONARY ROSSBY WAVES -- 12.1. INTRODUCTION -- 12.2. REANALYSIS DATA AND THE GEOS-5 AGCM EXPERIMENTS -- 12.3. RESULTS -- 12.4. SUMMARY AND CONCLUSIONS ACKNOWLEDGMENTS -- REFERENCES -- CHAPTER 13 THE CALIFORNIA DROUGHT: TRENDS AND IMPACTS -- 13.1. INTRODUCTION -- 13.2. THE PROLONGED DROUGHT OF 2012-2016 -- 13.3. ROLE OF ENSO CYCLE -- 13.4. ARCTIC INFLUENCES -- 13.5. DROUGHT IMPACTS ON CALIFORNIA -- 13.6. CONCLUDING REMARKS -- REFERENCES -- CHAPTER 14 OBSERVED TRENDS IN US TORNADO FREQUENCY -- 14.1. INTRODUCTION -- 14.2. STORM DATA TORNADO DATABASE -- 14.3. US TORNADO CLIMATOLOGY -- 14.4. CHANGES IN US TORNADO STATISTICS -- 14.5. CONCLUDING REMARKS -- ACKNOWLEDGMENTS -- REFERENCES -- CHAPTER 15 MECHANISMS EXPLAINING RECENT CHANGES IN AUSTRALIAN CLIMATE EXTREMES -- 15.1. INTRODUCTION -- 15.2. AUSTRALIAN RAINFALL EXTREMES OF 2010-2012 -- 15.3. AUSTRALIA'S TEMPERATURE EXTREMES OF 2013 -- 15.4. SUMMARY AND CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- CHAPTER 16 UNRAVELING EAST AFRICA'S CLIMATE PARADOX -- 16.1. INTRODUCTION -- 16.2. THE NATURE OF THE RECENT EAST AFRICAN LONG RAINS DECLINE -- 16.3. LINKS TO PACIFIC DECADAL VARIABILITY -- 16.4. PHYSICAL CONSIDERATIONS -- 16.5. CLIMATE MODEL SIMULATIONS OF EAST AFRICAN CLIMATE -- 16.6. CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- CHAPTER 17 A PHYSICAL MODEL FOR EXTREME DROUGHT OVER SOUTHWEST ASIA -- 17.1. INTRODUCTION -- 17.2. PRECIPITATION PATTERNS -- 17.3. SST RELATIONSHIPS -- 17.4. ATMOSPHERIC TELECONNECTIONS -- 17.5. SUMMARY -- APPENDIX: DATA -- REFERENCES -- PART IV PREDICTION OF CLIMATE EXTREMES -- CHAPTER 18 EXTRATROPICAL PRECURSORS OF THE EL NIÑO-SOUTHERN OSCILLATION -- 18.1. INTRODUCTION -- 18.2. OVERVIEW OF PRECURSORS AND THEIR IMPACT ON ENSO -- 18.3. DATA AND DEFINITIONS -- 18.4. EVALUATION OF PRECURSOR VARIABILITY AND COVARIABILITY -- 18.5. RELATIONSHIP BETWEEN PRECURSORS AND ENSO -- 18.6. DIAGNOSING PRECURSORS AS ENSO PREDICTORS -- 18.7. RELATIONSHIP OF EXTRATROPICAL PRECURSORS TO 2014 AND 2015 EL NIñO -- 18.8. SUMMARY AND DISCUSSION -- REFERENCES -- CHAPTER 19 NORTH ATLANTIC SEASONAL HURRICANE PREDICTION: UNDERLYING SCIENCE AND AN EVALUATION OF STATISTICAL MODELS -- 19.1. INTRODUCTION -- 19.2. STATISTICALLY BASED SEASONAL HURRICANE OUTLOOK MODELS -- 19.3. CONCLUSIONS -- REFERENCES -- CHAPTER 20 PREDICTING SUBSEASONAL PRECIPITATION VARIATIONS BASED ON THE MADDEN-JULIAN OSCILLATION -- 20.1. INTRODUCTION -- 20.2. THE MJO INFLUENCE ON THE VARIABILITY OF PRECIPITATION -- 20.3. FORECASTING THE MJO -- 20.4. THE MJO AND PREDICTABILITY OF PRECIPITATION -- 20.5. CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- CHAPTER 21 PREDICTION OF SHORT-TERM CLIMATE EXTREMES WITH A MULTIMODEL ENSEMBLE -- 21.1. INTRODUCTION -- 21.2. PREDICTION SKILL -- 21.3. PREDICTABILITY -- 21.4. SUMMARY AND DISCUSSION -- REFERENCES -- CHAPTER 22 TOWARD PREDICTING US TORNADOES IN THE LATE 21ST CENTURY -- 22.1. PROJECTING CHANGES IN US TORNADO ACTIVITY USING ENVIRONMENTAL PROXIES -- 22.2. SHORT-TERM TORNADO PREDICTION USING HIGH RESOLUTION MODELS AND APPLICATIONS TO DYNAMICAL DOWNSCALING -- 22.3. CONCLUDING REMARKS -- ACKNOWLEDGMENTS -- REFERENCES -- INDEX
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  • 17
    Call number: AWI P6-19-92187
    Type of Medium: Monograph available for loan
    Pages: 21 Seiten , Illustrationen, Karten
    Language: English
    Note: Contents: 1. Introduction. - 2. Background. - 2.1. Polar research in the Federal Republic of Germany. - 2.2. Previous research at "Georg von Neumayer". - 3. Reasons for a replacement station. - 4. Plans for the removal of "Georg von Neumayer". - 5. The new research station "Neumayer". - 5.1. Building operation. - 5.1.1. Planned construction site and operational phase. - 5.1.2. Supply vessel, building machinery and fuel. - 5.1.3. Building camp and waste management. - 5.2. Description of the new station. - 5.2.1. Station design. - 5.2.2. Energy generation and fuel storage. - 5.2.3. Waste management. - 5.2.4. Alternative energy. - 6. Description of the environment. - 6.1. Regional characteristics. - 6.2. Characteristics of Atka Bay. - 6.2.1. Physical conditions. - 6.2.2. Biological conditions. - 7. Consideration of potential environmental impacts. - 7.1. Building operation. - 7.2. Future operation of the station. - 8. Conclusion. - 9. References.
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  • 18
    Call number: AWI G8-20-93468
    Type of Medium: Dissertations
    Pages: XIII, 151, A28 Seiten , Illustrationen, Diagramme, Karten
    Language: English
    Note: Table of contents Abstract Zusammenfassung Abbreviations and Nomenclature 1. Introduction 1.1 Scientific Background 1.1.1 Climate and Permafrost 1.1.2 Remote Sensing 1.1.3 Research Questions 1.2 General Approach 1.3 Thesis Structure 1.4 Author’ s contributions 1.4.1 Chapter 2 1.4.2 Chapter 3 1.4.3 Chapter 4 1.4.4 Chapter 5 1.4.5 Appendix Paper 1 2. Detection of landscape dynamics in the Arctic Lena Delta withtemporally dense Landsat time-series Stacks 2.1 Abstract 2.2 Introduction 2.3 Study Area and Data 2.3.1 Study Area 2.3.2 Data 2.3.3 Methods/processing 2.4 Results 2.4.1 Regional Scale changes 2.4.2 Local scale changes 2.5 Discussion 2.5.1 Regional scale changes 2.5.2 Local scale changes 2.5.3 Data quality 2.5.4 Data usage and outlook 2.6 Conclusion 2.7 Data Archive 2.8 Acknowledgements 2.9 Appendix A. Supplementary Data 3. Landsat-Based Trend Analysis of Lake Dynamics across NorthernPermafrost Regions 3.1 Abstract 3.2 Introduction 3.3 Study Sites 3.3.1 Alaska North Slope (NSL) 3.3.2 Alaska Kobuk-Selawik Lowlands (AKS) 3.3.3 Central Yakutia (CYA) 3.3.4 Kolyma Lowland (KOL) 3.4 Data and Methods 3.4.1 Data and Trend Analysis 3.4.2 Pixel-Based Machine-Leaming Classification 3.4.3 Object-Based Image Analysis 3.4.4 Data Quality and Post-Processing 3.4.5 Calculation of Lake Change Statistics 3.5 Results 3.5.1 NSL (Alaska North Slope) 3.5.2 AKS (Alaska Kobuk-Selawik Lowlands) 3.5.3 CYA (Central Yakutia) 3.5.4 KOL (Kolyma Lowland) 3.6 Discussion 3.6.1 Data Analysis 3.6.2 Comparison of Sites and Prior Studies 3.7 Conclusions 3.8 Supplementary Materials 3.9 Acknowledgements 3.10 Appendix A 4. Remotely sensing recent permafrost region disturbances across Arcticto Subarctic transects 4.1 Abstract 4.2 Introduction 4.3 Results 4.3.1 Lakes 4.3.2 Retrogressive Thaw Slumps 4.3.3 Wildfire 4.4 Discussion 4.5 Methods 4.5.1 Remote Sensing Data Processing 4.5.2 Auxiliary Data Sources 5. Tundra landform and Vegetation productivity trend maps for theArctic Coastal Plain of northern Alaska 5.1 Abstract 5.2 Background & Summary 5.3 Methods 5.3.1 Polygonal tundra geomorphology mapping 5.3.2 Image processing 5.3.3 Image Classification 5.3.4 Decadal scale NDVI trend analysis 5.4 Data Records 5.5 Technical Validation 5.5.1 Tundra Geomorphology Map 5.5.2 NDVI Trend Map 5.6 Data Citation 6. Discussion/Synthesis 6.1 Landsat-based trend analysis 6.1.1 Spatial Scale 6.1.2 Time series analysis 6.1.3 Model complexity 6.2 Mapping of permafrost landscape dynamics 6.2.1 Lake dynamics 6.2.2 Wildfire 6.2.3 Retrogressive Thaw Slumps 6.3 Pan-arctic scale distribution and consequences of changes inpermafrost 6.4 Outlook Bibliography A-1. Appendix: Reduced arctic tundra productivity linked with landform and climate change interactions A-1.1 Abstract A-1.2 Introduction A-1.3 Methods A-1.4 Results A-1.5 Discussion Danksagung/Acknowledgements Eidesstattliche Erklärung
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  • 19
    Call number: AWI P5-22-95026
    Type of Medium: Monograph available for loan
    Pages: IV, 164 Seiten , Illustrationen
    ISBN: 0-920603-44-0
    Language: English
    Note: CONTENTS Introduction / Ming-ko Woo and Denis J. Gregor No Great Change: A Commentary on 50 Years of Watching Arctic Science / F. Kenneth Hare Arctic Climate in the Future / David Etkin and Tom Agnew Ice and Snow in the Arctic and Global Change / Peter Adams Snow, Sea· Ice and Climate: A Study of Scales / Ellsworth F. LeDrew and David G. Barber Past Climate Changes as Deduced from Canadian Ice Cores / Roy M. Koerner Natural and Anthropogenic Influences on the Chemical Composition of the Arctic Troposphere / Leonard A. Barrie Organic Micropollutants in Arctic Snow and Pim / Denis J. Gregor Climatic Change and the Permafrost Landscape / Antoni G. Lewkowicz Arctic Streamflow / Ming-ko Woo Ecology and Palaeocology of the Northern Treeline / Glen M. MacDonald and K. Gajewski Climate Change and its Effects on Canadian Arctic Plant Communities / Sylvia A. Edlund Environmental Change and Prehistory in Arctic Canada / Patricia D. Sutherland Concluding Remarks / George D. Hobson Glossary
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  • 20
    Call number: AWI Bio-23-95432
    Type of Medium: Monograph available for loan
    Pages: 942 Seiten , Illustrationen , 25 cm
    Edition: English edition with updated taxonomy and added species
    ISBN: 3946583067 , 9783946583066 , 978-3-946583-06-6
    Uniform Title: Diatomeen im Süßwasser-Benthos von Mitteleuropa
    Language: English
    Note: Table of contents Foreword to the German Edition Foreword to the English Edition Acknowledgments Introduction How to use this book Identification characters Glossary Key to the genera Key to the diatom genera covered by this book Genera and species Achnanthes Bory 1822 Achnanthidium Kützing 1844 Adlofia Lange-Bertalot in Moser et al. 1998 Amphipleura Kützing 1844 Amphora Ehrenberg ex Kützing 1844 Aneumastus D.G. Mann et A.J. Stickle in Round et al. 1990 Anomoeoneis Pfitzer 1871 Astartiella Witkowski, Lange-Bertalot et Metzeltin in Moser et al. 1998 Bacillaria Gmelin 1791 Berkeleya Greville 1827 Biremis D.G. Mann et E.J. Cox 1990 Brachysira Kützing 1836 Caloneis P.T. Cleve 1894 Campylodiscus Ehrenberg 1844 Cavinula D.G. Mann et A.J. Stickle in Round et al. 1990 Chamaepinnularia Lange-Bertalot et Krammer in Lange-Bertalot & Metzeltin 1996 Cocconeis Ehrenberg 1837 Cosmioneis D.G. Mann et A.J. Stickle in Round et al. 1990 Craticula Grunow 1868 Crenotia A.Z. Wojtal 2013 Ctenophora (Grunow) Williams et Round 1986 Cylindrotheca Rabenhorst 1859 Cymatopleura W. Smith 1851 Cymbella C. Agardh 1830 Cymbellafalsa Lange-Bertalot et Metzeltin 2009 Cymbellonitzschia Hustedt in A. Schmidt et al. 1924 Cymbopleura (Krammer) Krammer 1999 Delicata Krammer 2003 Denticula Kützing 1844 Diadesmis Kützing 1844 Diatoma Bory 1824 Didymosphenia M. Schmidt 1899 Dipioneis Ehrenberg 1844 Ellerbeckia R.M. Crawford 1988 Encyonema Kützing 1833 Encyonopsis Krammer 1997 Entomoneis Ehrenberg 1845 Epithemia Brebisson ex Kützing 1844 Eucocconeis P.T. Cleve ex F. Meister 1912 Eunotia Ehrenberg 1837 Fallacia A.J. Stickle et D.G. Mann in Round et al. 1990 Fistulifera Lange-Bertalot 1997 Fragilaria Lyngbye 1819 Fragilariforma Williams et Round 1988 Frustulia Rabenhorst 1853 Geissleria Lange-Bertalot et Metzeltin 1996 Gliwiczia M. Kulikovskiy, Lange-Bertalot et A. Witkowski 2013 Gomphocymbellopsis Krammer 2003 Gomphoneis Cleve 1894 Gomphonema Ehrenberg 1832 Gomphosphenia Lange-Bertalot 1995 Gyrosigma Hassall 1845 Flalamphora (Cleve) Levkov 2009 Hannaea R.M. Patrick 1966 Hantzschia Grunow 1877 Hippodonta Lange-Bertalot, Metzeltin et Witkowski 1996 Humidophila Lowe, Kociolek, Johansen, Van de Vijver, Lange-Bertalot et Kopalovä 2014 Karayevia F.E. Round et L. Bukhtiyarova ex F. E. Round Khursevichia M.S. Kulikovskiy, Lange-Bertalot et Metzeltin 2012 Kobayasiella Lange-Bertalot 1999 Kolbesia F.E. Round et L. Bukhtiyarova ex F.E. Round 1998 Lemnicola Round et Basson 1997 Luticola D.G. Mann in Round et al. 1990 Mastogloia Thwaites in W. Smith 1856 Mayamaea Lange-Bertalot 1997 Melosira C. Agardh 1824 Meridion C. Agardh 1824 Microcostatus Johansen et Sray 1998 Navicula Bory 1822 Navicymbula Krammer 2003 Neidiomorpha Lange-Bertalot et Cantonati 2010 Neidium Pfitzer 1871 Nitzschia Hassall 1845 Nupela Vyverman et Compere 1991 Odontidium Kützing 1844 Orthoseira Thwaites 1848 Paraplaconeis M.S. Kulikovskiy, Lange-Bertlot et Metzeltin 2012 Parlibellus EJ. Cox 1988 Peronia Brebisson et Arnott ex Kitton 1868 Pinnularia Ehrenberg 1843 Placoneis Mereschkowsky 1903 Planothidium Round et Bukhtiyarova 1996 Platessa Lange-Bertalot 2004 Prestauroneis K. Bruder et Medlin 2008 Psammothidium Bukhtiyarova et Round 1996 Pseudofallacia Liu, Kociolek et Wang 2012 Pseudostaurosira Williams et Round 1988 Reimeria Kociolek et Stoermer 1987 Rhoicosphenia Grunow 1860 Rhopalodia O. Müller 1895 Rossithidium Bukhtiyarova et Round 1996 Sellaphora Mereschkowsky 1902 Simonsenia Lange-Bertalot 1979 Skabitschewskia Kulikovskiy et Lange-Bertalot 2015 Stauroforma Flower, Jones et Round 1996 Stauroneis Ehrenberg 1843 Stauronella Mereschkowsky 1901 Staurosira Ehrenberg 1842 Staurosirella Williams et Round 1988 Stenopterobia Brebisson ex Van Heurck 1896 Surirella Turpin 1828 Tabellaria Ehrenberg ex Kützing 1844 Tabularia (Kützing) D.M. Williams et Round 1986 Tetracyclus Ralfs 1843 Tryblionella W. Smith 1853 Ulnaria (Kützing) P. Compere 2001 Selected brackish-water taxa found along the northern Germany coastline References Plates Index to the species
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  • 21
    Call number: ZSP-708-7
    In: SCAR report, No. 7
    Type of Medium: Series available for loan
    Pages: 54 Seiten , Illustrationen, graphische Darstellungen
    Series Statement: SCAR report 7
    Language: English
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  • 22
    Call number: ZSP-760/A-16
    In: Terra Antartica reports, No. 16
    Type of Medium: Series available for loan
    Pages: 15 Seiten , Illustrationen , 4 Kartenbeilagen, 1 Erläuterungsheft (4 S.)
    ISBN: 978-88-88395-13-5
    Series Statement: Terra Antartica reports 16
    Language: English
    Note: 1 Kartenbeilage unter dem Titel: Northern Foothills and Inexpressible Island Area (Victoria Land, Antarctica) : Satellite Image Map = Northern Foothills E Area Di Inexpressible Island (Terra Vittoria, Antartide) / Flavio Borfecchia & Massimo Frezzotti 〈1 : 50.000〉 , 1 Kartenbeilage unter dem Titel: Satellite Image Mosaic of the Terra Nova Bay Area (Victoria Land, Antarctica) = Mosaico Di Immagini Da Satellite Dell'Area Di Baia Terra Nova (Terra Vittoria, Antartide) / Massimo Frezzotti, Maria Christina Salvatore & Luca Vittuari 〈1 : 250.000〉 , 1 Kartenbeilage unter dem Titel: Mount Melbourne Quadrangle (Victoria Land) = Foglio Mount Melbourne (Terra Vittoria) / Editor Carlo Baroni 〈1 : 250.000〉 aus der Antarctic Geomorphological and Glaciological 1:250.000 Map Series , 1 Kartenbeilage unter dem Titel: Mount Melbourne Quadrangle (Victoria Land) 2012 / P. C. Pertusati, G. Musumeci, R. Carosi, M. Meccheri 〈1 : 250.000〉 aus der Antarctic Geological 1:250.000 Map Series , This case with the aim to celebrate 30 years of Italian research in Antarctica, contains four geothematic maps of the Terra Nova bay area where the Italian Programma Nazionale di Ricerche in Antartide begun its activities in 1985 and the Italian coastal station Mario Zucchelli was constructed.
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  • 23
    Call number: AWI G3-19-92414
    Description / Table of Contents: Permafrost, defined as ground that remains frozen for at least two consecutive years, is a prominent feature of polar regions. In the Northern Hemisphere, approximately 23 million km2 of the ground are affected by permafrost. Climatic warming, which has a greater effect on the Arctic than on any other region on Earth, leads to permafrost thaw, caused by gradual deepening of the seasonal unfrozen layer (active layer), thermokarst formation (i.e. land subsidence due to ground ice loss) and thermo-erosion. In the course of thaw, formerly freeze-locked organic carbon (OC) is mobilized and mineralized into greenhouse gases (GHGs), fostering further climate warming – a process known as permafrost carbon feedback. Current climate models focus on GHG release from gradual deepening of the active layer and neglect the OC turnover during lateral transport induced by thermokarst and abrupt thermo-erosion. As such, the accelerated erosion of Arctic permafrost coasts, which make up ~34 % of the global coasts, deliver vast amounts of OC into the Arctic Ocean. However, little is known about the amounts of labile and fast bioavailable dissolved OC (DOC), the impact of thermokarst on mobilized organic matter (OM) characteristics, and the release of GHGs from eroding permafrost coasts. To fill that knowledge gap, the main objectives of the thesis are to investigate (i) how much DOC is mobilized from coastal erosion, (ii) how thermokarst and -erosion alters OM characteristics upon thaw on transit to the ocean, and (iii) how much GHGs are emitted from the nearshore zones of eroding permafrost coasts. Field work and sampling took place along the Yukon coast and on Qikiqtaruk (Herschel Island) in the western Canadian Arctic. An interdisciplinary approach was used to quantify OM (OC and nitrogen) as well as to identify degradation processes. The methods used included sedimentology, geo- and hydrochemistry, remote sensing, statistical analyses, and gas chromatography. The thesis shows that considerable amounts of DOC are released from eroding permafrost coasts. Although OC fluxes into the ocean are dominated by DOC from Arctic rivers and particulate OC (POC), labile DOC derived from permafrost plays an important role as it is quickly available for biogeochemical cycling and turnover into GHGs. During transit from land to ocean OM characteristics are substantially altered by thermokarst formation and thermo-erosion. In mudpools, originating from in-situ thawed permafrost, as well as in thaw streams draining thermokarst features towards the ocean, mobilized OM issubject to dilution with melted ground ice and degradation, which result in a decrease of OM contents by more than 50 %. The turnover of OC continues in the nearshore zone. The biochemically most labile OC portions are rapidly lost within months and mineralized into GHGs. The production of GHGs in the ocean is 60 to 80 % as efficient as on land and primarily in form of carbon dioxide (CO2), due to aerobic conditions in the nearshore zone. During each open water season in the Arctic approximately 0.7 to 1.2 Tg of CO2 are emitted from the coastal fringe. The remaining OM is buried in nearshore and shelf sediments, potentially remobilized by waves, currents and ice scouring at later stages. To conclude, the thesis shows that eroding permafrost coasts release large amounts of OC, from which considerable portions are labile DOC. In the course of thermokarst formation and thermo-erosion, OM is diluted and the most labile portions subject to rapid turnover into GHGs. This shows that eroding permafrost coasts are a major yet neglected source of CO2 to the atmosphere. With increasing temperatures and longer sea ice-free conditions projected for the Arctic, the erosion of permafrost coasts accelerates. Consequently, the transfer of OC to the ocean accompanied by GHG production increases, which is expected to have drastic impacts for the climate and coastal ecosystems.
    Type of Medium: Dissertations
    Pages: IX, 106, A1-A-57 Seiten , Illustrationen, Diagramme
    Language: English
    Note: Table of contents Abstract Zusammenfassung Abbreviations and nomenclatureI 1. Introduction 1.1 Scientific background 1.1.1 Permafrost and ground ice 1.1.2 Organic carbon pools and fluxes into the Arctic Ocean 1.1.3 Climate warming and permafrost thaw 1.1.4 Permafrost degradation and coastal erosion 1.1.5 Study area Yukon coast and Qikiqtaruk 1.2 Knowledge gaps 1.3 Aims and objectives 1.4 Thesis structure and author's contribution 2. Eroding permafrost coasts release low amounts of dissolved organic carbon (DOC) from ground ice into the nearshore zone of the Arctic Ocean 2.1 Abstract 2.2 Introduction 2.3 Study area 2.4 Methods 2.4.1 Field work 2.4.2 DOC concentration 2.4.3 DOC flux estimation 2.5 Results 2.5.1 Segmentation of the coast - literature synthesis 2.5.2 DOC concentration 2.5.3 DOC stocks and fluxes 2.6 Discussion 2.6.1 DOC concentrations in ground ice 2.6.2 DOC fluxes from the YC 2.6.3 DOC fluxes and the Arctic carbon budget 2.7 Conclusion and Outlook 2.8 Acknowledgements 3.Transformation of terrestrial organic matter along thermokarst-affected permafrost coasts in the Arctic 3.1 Abstract 3.2 Introduction 3.3 Study area 3.3 Methods 3.3.1 Field work 3.3.2 Sedimentology, stratigraphy, and vegetation 3.3.3 Organic matter 3.3.4 Statistics 3.3.5 Transformation of organic matter 3.3.6 Fate of organic matter in the nearshore zone 3.4 Results 3.4.1 Sedimentology, stratigraphy, and vegetation 3.4.2 Organic matter 3.4.3 C/N-ratios and δ13C 3.4.4 Biomarkers 3.5 Discussion 3.5.1 Transformation of organic matter in the disturbed zone 3.5.2 Fate of organic matter in the nearshore zone 3.5.3 Environmental impact of the RTS 3.6 Conclusion 3.7 Acknowledgements 4. Rapid greenhouse gas release from eroding permafrost coasts 4.1 Summary 4.2 Background 4.3 Study site 4.4 Sampling and incubation setup 4.5 Findings and discussion 4.6 Conclusion 4.7 Methods 4.7.1 Incubation conditions 4.7.2 Gas measurements 4.7.3 Geo- and hydrochemical analysis 4.8 Acknowledgements 5. Synthesis 5.1 Mobilization of permafrost OC pools by coastal erosion 5.2 Transformation of permafrost OM on transit from land to sea 5.3 Fate and pathways of permafrost OC in the nearshore zone 5.4 Conclusion and outlook References Appendix I: Dissolved organic carbon (DOC) in Arctic ground ice I-1 Abstract I-2 Introduction I-3 Study area and study sites I-4 Material and methods I-4-1 Laboratory analyses I-4-2 Statistical methods I-5 Results I-5-1 DOC and DIC concentrations I-5-2 Correlation matrix I-5-3 Principal components I-5-4 Univariate Tree Model (UTM) I-6 Discussion I-6-1 DOC stocks in ground ice and relevance to carbon cycling I-6-2 Carbon sequestration and origin in relation to inorganic geochemistry I-6-3 DOC mobility and quality upon permafrost degradation I-7 Conclusions and outlook I-8 Acknowledgements Appendix II: Supplementary material for Chapter 2 II-1 Supplementary table - Ground ice and geochemical data II-2 Supplementary table - Coastal segments and DOC flux Appendix III: Supplementary material for Chapter 3 III-1 Normalized Differenced Vegetation Index map III-2 Photograph of a massive ice bed in a RTS III-3 Calculation of biomarker proxies III-4 Supplementary table - Summary of geochemical data III-5 Supplementary table - Summary of statistical analysis AppendixI V: Supplementary material for Chapter 4 IV-1 Design of the incubation experiment IV-2 Photograph of a standard incubation setup IV-3 Conversion of gas amounts into mass IV-4 Total and daily aerobic CH4 production IV-5 Histogram summarizing OC losses and CO2 emissions IV-6 Supplementary table - Summary of TOC, DOC, and pH data IV-7 Supplementary table - Summary of TN, TOC/TN, and δ13C-TOC data IV-8 Supplementary table - Summary of total CO2 and CH4 production data IV-9 Supplementary table - Comparison of incubation setups IV-10 Supplementary table - Summary of daily CO2 production data IV-11 Supplementary table - Summary of daily CH4 production data Acknowledgements-Danksagung
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  • 24
    Call number: AWI G3-19-92415
    Type of Medium: Dissertations
    Pages: VIII, 154, xv Seiten , Illustrationen, Diagramme, Karten
    Language: English
    Note: Table of contents Abstract Zusammenfassung 1 Motivation 2 Introduction 2.1 Arctic climate changes and their impacts on Coastal processes 2.2 Shoreline retreat along Arctic coasts 2.3 Impacts of Coastal erosion 2.3.1 Material fluxes 2.3.2 Retrogressive thaw slumps 2.3.3 Socio-economic impacts 2.4 Objectives 2.5 Study area 2.6 Thesis structure 2.7 Authors’ contributions 3 Variability in rates of Coastal change along the Yukon coast, 1951 to 2015 3.1 Introduction 3.2 Study Area 3.3 Data and Methods 3.3.1 Remote sensing data 3.3.2 Field survey data 3.3.3 Classification of shoreline 3.3.4 Transect-wise analyses of shoreline movements through time 3.4 Results 3.4.1 Temporal variations in shoreline change rates 3.4.2 Alongshore rates of change 3.4.3 Shoreline dynamics along field sites 3.4.4 Dynamics of lagoons, barrier Islands and spits (gravel features) 3.4.5 Yukon Territory land loss 3.5 Discussion 3.5.1 Temporal variations in shoreline change rates 3.5.2 Alongshore rates of change 3.5.3 Dynamics of lagoons, barrier Islands, and spits (gravel features) 3.5.4 Expected shoreline changes as a consequence of future climate warming 3.6 Conclusions Context 4 Coastal erosion of permafrost Solls along the Yukon Coastal Plain and Kuxes oforganic carbon to the Canadian Beaufort Sea 4.1 Introduction 4.2 Study Area 4.3 Methods 4.3.1 Sample collection and laboratory analyses 4.3.2 Soll organic carbon determinations 4.3.3 Flux of organic soil carbon and Sediments 4.3.4 Fate of the eroded soil organic carbon 4.4 Results 4.4.1 Ground lce 4.4.2 Organic carbon contents 4.4.3 Material fluxes 4.5 Discussion 4.5.1 Ground lce 4.5.2 Organic carbon contents 4.5.3 Material fluxes 4.5.4 Organic carbon in nearshore Sediments 4.6 Conclusion Context 5 Terrain Controls on the occurrence of Coastal retrogressive thaw slumpsalong the Yukon Coast, Canada 5.1 Introduction 5.2 Study Area 5.3 Methods 5.3.1 Mapping of RTSs and landform Classification 5.3.2 Environmental variables 5.3.3 Univariate regression trees 5.4 Results 5.4.1 Characteristics of RTS along the coast 5.4.2 Density and areal coverage od RTSs along the Yukon Coast 5.5 Discussion 5.5.1 Characteristics and distribution of RTSs along the Yukon Coast 5.5.2 Terrain factors explaining RTS occurrence 5.5.3 Coastal processes 5.6 Conclusions Context 6 Impacts of past and fiiture Coastal changes on the Yukon coast - threats forcultural sites, infrastructure and travel routes 6.1 Introduction 6.2 Study Area 6.3 Methods 6.3.1 Data for shoreline projections 6.3.2 Shoreline projection for the conservative scenario (S1) 6.3.3 Shoreline Projection for the dynamic scenario (S2) 6.3.4 Positioning and characterizing of cultural sites 6.3.5 Calculation of losses under the S1 and S2 scenarios 6.3.6 Estimation of future dynamics in very dynamic areas 6.4 Results and discussion 6.4.1 Past and future shoreline change rates 6.4.2 Cultural sites 6.4.3 Infrastructure and travel routes 6.5 Conclusions 7 Discussion 7.1 The importance of understanding climatic drivers of Coastal changes 7.2 The influence of shoreline change rates on retrogressive thaw slump activity 7.3 On the calculation of carbon fluxes from Coastal erosion along the Yukon coast 7.4 Impacts of present and future Coastal erosion on the natural and human environment 7.5 Synthesis 8 Summary and Conclusions Bibliography Supporting Material Data Set ds01 Table S1 Table S3 Abbreviations and Nomendature Acknowledgements
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  • 25
    Call number: AWI G4-22-94986
    Description / Table of Contents: Hydrological processes occurring within the vadose zone, especially in heterogeneous soils and tills typical of the Canadian shield, are not well understood. This research investigates the importance of the vadose zone in a small headwater basin (Harp 4-21) in the Canadian shield with respect to the generation of stream runoff quantity and quality during episodic rainfall and snowmelt events. The study focused specifically on: firstly the effect of variable antecedent moisture conditions on water-table and stream response, secondly, the significance of the stored vadose water in water extracted from a rising water-table, and thirdly the significance of preferential flowpathways in the vadose zone as a means of rapidly rotating, stored vadose water to the stream during runoff events. The instrumentation of the Harp 4-21 basin includes three v-notch weirs along the stream, numerous piezometers and wells, several soil lysimeters, and three tensiometer nests. Much of the data used in this study was obtained from five sites located along a hillslope transect. Soil water content at each of the hillslope sites was accurately determined using time domain reflectometry (TDR), whereas water table elevations were measured using both electronic water level tapes and calibrated rod floats. Preferential flowpath data was derived from flow gauging and chemical analyses of water samples. Results obtained from the near-stream and lower slope reaches of the hillslope transect indicated that soil water content in the vadose zone is maintained at a high level of saturation by shallow water-table depths. Further analysis of simultaneously measured soil water content and depth to water—table data clearly showed that the existence of a thick essentially saturated zone overlying the water table (capillary fringe) was responsible for the large and rapid water-table responses observed during many of the nine studied precipitation events. On a basin scale, the seasonal variability of the area in which the capillary fringe extended to the ground surface was largely responsible for the observed trend in basin yield (runoff volume/ rainfall volume) for the nine runoff events. Chemical tracing results using silica, pH and DOC showed that the large vadose water reservoir in the near-stream and lower slope areas was a dominant component in water extracted from a rising water-table during most precipitation events. Silica results from the near-stream vadose zone showed that only the massive groundwater recharge associated with spring snowmelt could completely replace the vadose water reservoir with shorter residence time snowmelt/rainfall water. The rapid routing of stored near-stream capillary fringe vadose water through preferential pathways (macropores, soil pipes) was a significant source of runoff to the stream during runoff events. The presence of soil pipes, along with the significant vadose water reservoir in near-stream and lower slope areas are sufficient to explain the large phreatic/vadose water component typically identified in two component flow separation models, and constitutes the basis of a physically-based conceptual runoff model for the Harp 4-21 basin.
    Type of Medium: Dissertations
    Pages: 172 Seiten , Illustrationen
    Language: English
    Note: Masterarbeit, Wilfrid Laurier University, Waterloo, 1992 , Table of Contents Abstract Acknowledgements List of Figures List of Tables Chapter 1 Introduction and Literature Review 1.1 introduction 1.2 Research objectives 1.3 Literature review 1.3.1 Overland flow 1.3.2 Overland flow from partial areas 1.3.3 Subsurface stormflow 1.3.4 The variable source area subsurface stormtlow concept 1.3.5 Groundwater and the capillary fringe effect 1.3.6 Preferential flow 1.3.6.1 Macropore flow 1.3.6.2 Unstable flow 1.4 Summary of uncertainties in the vadose zone Chapter 2 Methodology 2.1 Introduction 2.2 The Harp 4-21 basin: site description 2.2.1 Basin topography 2.2.2 Bedrock and surficial geology 2.2.3 Vegetation 2.2.4 General hydrology 2.3 Basin instrumentatio 2.3.1 Stream 2.3.2 Phreatic zone 2.3.3 Vadose zone 2.3.3.1 Soil moisture 2.3.3.2 Preferential flowpaths 2.4 Hillslope transect instrumentation 2.4.1 The hillslope transect 2.4.2 Time domain reflectometry 2.4.3 Vadose water extraction 2.5 Sampling techniques, frequency and chemical analyses 2.5.1 Precipitation 2.5.2 Stream 2.5.3 Phreatic zone 2.5.4 Vadose zone 2.5.4.1 Soil moisture measurement and analysis of the TDR trace 2.5.4.2 Vadose water sampling 2.5.5 Chemical analysis Chapter 3 Results and Discussion: Antecedent Moisture Conditions 3.1 Introduction 3.2 Runoff events ~ampled during the May 1990 - April 1991 field season 3.3 Assessment of antecedent moisture conditions in the Harp 4-21 basin 3.3.1 Seasonal basin yield 3.3.2 Seasonal depth to water-table 3.3.3 Tensiometric data 3.3.4 Soil moisture conditions in the hillslope transect (Time Domain Reflectometry) 3.3.4.1 Soil water content/depth to water-table relationship 3.3.4.2 Estimation of the capillary fringe thickness and the temporal variation of basin area in which it extends to the ground surface 3.4 Assessment of the origin of water in the vadose zone of near-stream and lower slope areas which experience significant water-table responses during runoff generating events 3.4.1 Introduction 3.4.2 Near-stream 07 piezometer nest 3.4.3 Lower slope TD4 mini-piezometer nest Chapter 4 Preferential flowpathways: Results and discussion 4.1. Discharge contributions to streamflow during runoff events 4.2. Assessment of the origin of water emmitted from the soil pipes during runoff events Chapter 5 Conclusions References Appendix I Appendix II Appendix Ill Appendix IV Appendix V , Englisch
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  • 26
    Series available for loan
    Series available for loan
    Akureyri : International Arctic Science Committee
    Associated volumes
    Call number: AWI P5-17-90721
    In: IASC ... bulletin, 2017
    Type of Medium: Series available for loan
    Pages: 86 S. , Ill., graph. Darst., Kt.
    ISBN: 978-9935-24155-9
    ISSN: 1654-7594
    Series Statement: IASC Bulletin 2017
    Language: English
    Note: Content: Preface. - 1 IASC Internal Development. - IASC Organization. - IASC Council . - IASC Executive Committee. - IASC Secretariat. - Allen Pope New IASC Executive Secretary. - IASC Secretariat Moves to Iceland. - IASC Future Strategy. - IASC Medal 2017. - 2 IASC Working Groups. - Cross-Cutting Initiatives. - Atmosphere Working Group (AWG). - Cryosphere Working Group (CWG). - Marine Working Group (MWG). - Social and Human Working Group (SHWG). - Terrestrial Working Group (TWG). - 3 Arctic Science Summit Week 2016. - Upcoming ASSWs. - 4 Data and Observations. - Arctic Data Committee (ADC). - Sustaining Arctic Observing Networks (SAON). - 5 Partnerships. - Asian Forum for Polar Sciences (AFoPS). - Arctic Council. - 6 Capacity Building. - IASC Fellowship Program. - Overview of Supported Early Career Scientists. - Annex. - Polar Acronyms.
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  • 27
    Call number: ZSP-708-8
    In: SCAR report, No. 8
    Type of Medium: Series available for loan
    Pages: 40 Seiten
    Series Statement: SCAR Report 8
    Language: English
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  • 28
    Monograph available for loan
    Monograph available for loan
    Potsdam : Bibliothek Wissenschaftspark Albert Einstein
    Call number: AWI G3-18-91414 ; M 18.91414
    Description / Table of Contents: This project started in October 2015 with a crazy idea : prepare and submit a funding application for an international, multidisciplinary and non-traditional scientific outreach project… within the next 48 hours. Well, it worked out. A group of highly motivated young researchers from Canada and Europe united to combine arts and science and produce a series of outreach comic strips about permafrost (frozen ground). The aim of the project is to present and explain scientific research conducted across the circumpolar Arctic, placing emphasis on field work and the rapidly changing northern environment. The target audience is kids, youth, parents and teachers, with the general goal of making permafrost science more fun and accessible to the public. Because guess what : permafrost represents an area of more than twenty million km2 in the Northern Hemisphere, a huge area. As the climate warms, permafrost thaws and becomes unstable for houses, roads and airports. This rapid thawing of previously frozen ground also disrupts plant and animal habitats, impacts water quality and the ecology of lakes, and releases carbon into the atmosphere as greenhouse gases, making climate change even stronger. Hence permafrost and its response to climate change concerns us all. The project received initial support from the International Permafrost Association (IPA) as a targeted ‘Action Group’, and since then several other sponsors have joined the project. Here we are, now, two years after this first idea. What you are about to read is the result of an iterative process of exchanging ideas between artists and scientists. We first made an application call and received 49 applications from artists in 16 countries. Through a formal review process, we then selected two artists to work on this project: Noémie Ross from Canada, and Heta Nääs from Finland. With input from scientists, Noémie and Heta created fantastic cartoons that explain some of the changes happening to the environment in permafrost areas, how they affect people and wildlife, and what scientists are doing to better understand these changes to help people find innovative ways to adapt. We wish everyone plenty of fun reading this booklet and we would like to thank all those who supported this project.
    Type of Medium: Monograph available for loan
    Pages: 27 Seiten , Illustrationen
    ISBN: 978-2-9816972-0-2
    Language: English
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  • 29
    Monograph available for loan
    Monograph available for loan
    Cham : Springer International Publishing
    Call number: AWI G2-20-93405
    Description / Table of Contents: This volume describes the complex characteristics of almost all Russian coastal estuaries systematized in the following regions: the coasts of the White Sea, the Barents Sea, the Kara Sea, the Laptev Sea, the East Siberian Sea, the Chukchi Sea, the Black Sea, the Sea of Azov, the Baltic Sea, the Sea of Okhotsk, the Sea of Japan and the Bering Seas. The part on the Baltic Sea includes a detailed description of the Kaliningrad coast and the Gulf of Finland. Apart from the geology and morphology, this book also looks at the anthropogenic effects on shores as well as at hydrological conditions, local climate and water level characteristics, and at economic use of lagoons
    Type of Medium: Monograph available for loan
    Pages: xiii, 270 Seiten , Illustrationen
    ISBN: 9783319433929 , 9783319433905 (print)
    Series Statement: Estuaries of the World
    Language: English
    Note: Contents 1 Specific Features of Estuaries, Lagoons, Limans: Concepts and Terms / Petr Brovko and Ruben Kosyan 2 Estuaries and Lagoons of the Russian Arctic Seas / Vyacheslav Krylenko 3 Estuaries, Lagoons, and Limans of the Marginal Seas of Northeast Asia / Petr Brovko, Yuri Mikishin, and Tamara Ponomareva 4 Lagoons of the Black Sea / Vyacheslav Krylenko and Marina Krylenko 5 Lagoons of the Smallest Russian Sea / Marina Krylenko, Ruben Kosyan, and Vyacheslav Krylenko 6 Transboundary Lagoons of the Baltic Sea / Boris Chubarenko, Dmitriy Domnin, Svetlana Navrotskaya, Zhanna Stont, Vladimir Chechko, Valentina Bobykina, Vasiliy Pilipchuk, Konstantin Karmanov, Anastasea Domnina, Tatiana Bukanova, Victoria Topchaya, and Alexander Kileso 7 Neva Bay: A Technogenic Lagoon of the Eastern Gulf of Finland (Baltic Sea) / Daria Ryabchuk, Vladimir Zhamoida, Marina Orlova, Alexander Sergeev, Julia Bublichenko, Andrey Bublichenko, and Leontina Sukhacheva 8 The White Sea as an Estuarine System / Evgeniy Ignatov, Oleksiy Kalynychenko, and Anatoliy Pantiulin 9 The Diversity of Russian Estuaries / Ruben Kosyan, Petr Brovko, and Jean-Paul Ducrotoy Index
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  • 30
    Call number: AWI Bio-20-93992
    Type of Medium: Dissertations
    Pages: XIII, 137 Seiten , Illustrationen, Diagramme , 1 CD-ROM
    Language: English
    Note: Dissertation, Universität Potsdam, 2017 , Content List of Abbreviations List of Figures List of Tables Summary Zusammenfassung Motivation Chapter 1 1. Scientific background 1.1 Late Quaternary climate changes and treeline transition in northern Siberia 1.2 Natural archives and proxies to assess vegetation history 1.3 Study area 1.3 Objectives of the thesis 1.4 Thesis outline 1.4.1 Chapters and manuscripts 1.4.2 Author's contribution 1.4.2.1 Manuscript I - published 1.4.2.2 Manuscript II - submitted 1.4.2.3 Manuscript III - prepared for submission Chapter 2 2. Manuscript I: Sedimentary ancient DNA and pollen reveal the composition of plant organic matter in Late Quaternary permafrost sediments of the Buor Khaya Peninsula (north-eastern Siberia) 2.1 Abstract 2.2 Introduction 2.3 Geographical settings 2.4 Material and methods 2.4.1 Core material 2.4.2 Subsampling of the permafrost core 2.4.3 Molecular genetic laboratory work 2.4.4 Analysis of sequence data and taxonomic assignments 2.4.5 Pollen sample treatment and analysis 2.4.6 Statistical analyses and visualization 2.5 Results 2.5.1 SedaDNA 2.5.1.1 SedaDNA of terrestrial plants 2.5.1.2 SedaDNA of swamp and aquatic plants 2.5.1.3 SedaDNA of bryophytes and algae 2.5.2 Pollen 2.5.2.1 Pollen of terrestrial plants 2.5.2.2 Pollen and spores of swamp and aquatic plants 2.5.2.3 Spores and algae 2.5.3 Ratios of terrestrial to swamp and aquatic taxa and Poaceae to Cyperaceae 2.6 Discussion 2.6.1 Quality and proxy value of sedaDNA and pollen data 2.6.2 Environmental conditions during the pre-LGM (54-51 kyr BP, 18.9-8.35 m) and composition of deposited organic matter 2.6.3 Environmental conditions during the post-LGM (11.4-9.7 kyr BP (13.4-11.1 cal kyr BP)) and composition of deposited organic matter 2.7 Conclusions 2.8 Acknowledgements Chapter 3 3. Manuscript II: Genetic variation of larches at the Siberian tundra-taiga ecotone inferred from the assembly of chloroplast genomes and mitochondrial sequences 3.1. Abstract 3.2. Introduction 3.3. Material and methods 3.3.1 Plant material 3.3.2 DNA isolation and sequencing 3.3.3 Sequence processing and de novo assembly 3.3.4 Chloroplast genome assembly, annotation and variant detection 3.3.5 Mitochondrial sequences 3.3.6 Analyses of genetic variation 3.4 Results 3.4.1 Chloroplast genome structure and genetic variation 3.4.2 Mitochondrial sequences and genetic variation 3.5 Discussion 3.5.1 De novo assembly and genetic variation of chloroplast genomes and mitochondrial sequences 3.5.2 The distribution of genetic variation at the tundra-taiga ecotone 3.6 Conclusions 3.7 Acknowledgements Chapter 4 4. Manuscript III: The history of tree and shrub taxa and past genetic variation of larches on Bol'shoy Lyakhovsky Island (New Siberian Archipelago) since the last interglacial uncovered by sedimentary ancient DNA 4.1 Abstract 4.2 Introduction 4.3 Materials and methods 4.3.1 Geographic setting 4.3.2 Core material 4.3.2.1 Core L14-02: Yedoma Ice Complex 4.3.2.2 Core L14-03: Thermo terrace 4.3.2.3 Core L14-04 and hand-pieces L14-04B and L14-04C: Thermo terrace including Eemian deposits 4.3.2.4 Core L14-05: Alas 4.3.3 Core sub-sampling 4.3.4 Molecular genetic laboratory work 4.3.4.1 Sedimentary ancient DNA metabarcoding approach 4.3.4.2 Specific amplification of Larix from sedimentary ancient DNA 4.3.5 Filtering of Illumina sequencing data and taxonomic assignments 4.3.6 Statistical analyses and visualization 4.3.7 Geochronology 4.4. Results 4.4.1 Overall composition of the DNA metabarcoding data 4.4.2 Terrestrial vegetation composition 4.4.2.1 Core L14-02: Late Pleistocene Yedoma Ice Complex 4.4.2.2 L14-03: Deeper late Pleistocene deposits 4.4.2.3 L14-04 Thermo terrace including Eemian deposits 4.4.2.4 Core L14-05: Alas with Holocene lake deposits and taberits of the Yedoma Ice Complex 4.4.2.5 The multivariate structure of the terrestrial vegetation among samples and cores 4.4.3 Genetic variation ofsediment-derived Larix sequences 4.5 Discussion 4.5.1 Tree taxa in the sedaDNA record - where do they come from? 4.5.2 Terrestrial plant community changes of warm phases since the last interglacial 4.5.3 Past genetic diversity of larch populations on Bol'shoy Lyakhovsky Island 4.6 Conclusion 4.7 Acknowledgements Chapter 5 5. Synopsis 5.1 The proxy potential of sedaDNA in paleobotanical reconstructions from sedimentary deposits 5.1.1 Combining sedaDNA and pollen to assess plant diversity and vegetation composition 5.1.2 Current limits and opportunities of sedaDNA approaches 5.2 Using genomic data to trace modern and past treeline dynamics 5.2.1 Modern genomic variation at the Siberian treeline 5.2.2 PCR-based markers for paleoenvironmental genetics 5.3 Terrestrial plant community changes and treeline dynamics in north-eastern Siberia since the last interglacial 5.3.1 Vegetation changes in north-eastern Siberia since the last interglacial 5.3.2 Implications for treeline dynamics 5.4 Conclusion 5.5 Outlook Appendix 1. Supplementary material for Manuscript I (Chapter 2) 2. Supplementary material for Manuscript II (Chapter 3) 3. Supplementary material for Manuscript III (Chapter 4) References Acknowledgements Erklärung
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    Call number: AWI Bio-20-93994
    Type of Medium: Dissertations
    Pages: viii, 140 Seiten , Illustrationen, Diagramme
    Language: English
    Note: Dissertation, Universität Potsdam, 2017 , Table of Contents I. Abstract II. Deutsche Zusammenfassung 0 Challenge 1 Introduction 1.1 The treeline ecotone 1.2 Stand structure drivers in the treeline ecotone 1.3 Climate change and recent treeline changes 1.4 Methods for treeline studies 1.4.1 Overview 1.4.2 Field-based treeline studies 1.4.3 Modelling treeline dynamics 1.5 Study Area 1.6 The Siberian treeline ecotone 1.7 Larix as study Species 1.8 Objectives of this thesis 1.9 Thesis outline 1.10 Contribution of the authors 1.10.1 Manuscript!- published 1.10.2 Manuscript II - submitted 1.10.3 Manuscript III-in preparation 1.10.4 Manuscript IV-submitted 2 Manuscript I Treeline dynamics in Siberia under changing climates as inferred from an individual-based model for Larix 2.1 Abstract 2.2 Introduction 2.3 Materials and Methods 2.3.1 Reference sites 2.3.2 Description of the model LAVESI 2.3.3 The ODD-Protocol for LAVESI 2.3.4 Parameterization 2.3.5 Khatanga climate time-series 2.3.6 Sensitivity analysis 2.3.7 Model experiments 2.4 Results 2.4.1 Sensitivity analysis 2.4.2 Taymyr treeline application 2.4.3 Temperature experiments 2.5 Discussion 2.5.1 Assessment of LAVESI sensitivity 2.5.2 Larix stand simulation under the Taymyr Peninsula weather 2.5.3 Transient Larix response to hypothetical future temperature changes 2.5.4 Conclusions 2.6 Acknowledgements 3 Manuscript II Dissimilar responses of larch stands in northern Siberia to increasing temperatures - a field and simulation based study 3.1 Abstract 3.2 Introduction 3.3 Methods 3.3.1 Study area 3.3.2 Field-based approach 3.3.3 Age analyses 3.3.4 Stand structure analyses 3.3.5 Seed analyses 3.3.6 Establishment history 3.3.7 Modelling approach 3.4 Results 3.4.1 Field data 3.4.2 Simulation study 3.5 Discussion 3.5.1 Data acquisition 3.5.2 Larch-stand patterns across the Siberian treeline ecotone 3.5.3 Warming causes densification in the forest-tundra 3.5.4 Intra-specific competition inhibits densification in the closed forest 3.5.5 Recruitment limitation decelerates densification and northward expansion ofthe single-tree tundra 3.6 Conclusions 3.7 Acknowledgements 4 Manuscript III Spatial patterns and growth sensitivity of larch stands in the Taimyr Depression 4.1 Abstract 4.2 Introduction 4.3 Methods 4.3.1 Study Area 4.3.2 Field data collection 4.3.3 Spatial point patterns 4.3.4 Dendrological approach 4.4 Results 4.4.1 Spatial patterns 4.4.2 Tree growth 4.5 Discussion 4.5.1 Spatial patterns 4.5.2 Tree chronology characteristics 4.6 Conclusion 5 Manuscript IV Patterns of larch stands under different disturbance regimes in the lower Kolyma River area (Russian Far East) 5.1 Abstract 5.2 Introduction 5.3 Methods 5.3.1 Study area and field data collection 5.3.2 Site description 5.3.3 Dendrochronological approach 5.3.4 Statistical analyses 5.4 Results 5.4.1 General stand characteristics and age structure 5.4.2 Spatial patterns 5.5 Discussion 5.5.1 Fire related disturbances 5.5.2 Water-related disturbances: lake drainage, flooding, polygon development 5.5.3 Implications and conclusion 6 Synthesis and Discussion 6.1 Assessment of applied methods 6.1.1 Field-based observations: 6.1.2 Modelling 6.2 Overview of larch stand structures and spatial pattern on different spatial scales 6.2.1 Recent stand structures 6.2.2 Spatial Patterns 6.3 Stand structure drivers and treeline changes 6.3.1 Climate change 6.3.2 Disturbances 6.3.3 Autecology 6.4 Conclusion 6.5 Outlook 7 Appendix 7.1 Supplementary information for Manuscript I 7.2 Supplementary information for Manuscript II 7.2.1 Manuscript II: Appendix 1. Climatic information for the study region 7.2.2 Manuscript II: Appendix 2. Plot-specific values and krummholz appearance 7.2.3 Manuscript II: Appendix 3. Regression analysis for age data 7.2.4 Manuscript II: Appendix 4. Model description 7.3 Supplementary information for Manuscript III 7.4 Supplementary information for Manuscript IV 7.5 Supplementary information 8 References Danksagung Eidesstattliche Erklärung
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  • 32
    Monograph available for loan
    Monograph available for loan
    Harlow, England : Pearson
    Call number: AWI G10-21-94627
    Type of Medium: Monograph available for loan
    Pages: xxv, 810 Seiten , Illustrationen, Karten , 28 cm
    Edition: Fourth edition
    ISBN: 9781292083575
    Language: English
    Note: Contents Preface to the fourth edition Contributors Editor's acknowledgements Acknowledgements Part I: The role of physical geography 1 Approaching physical geography 1.1 Introduction 1.2 Historical development of physical geography 1.2.1 Physical geography before 1800 1.2.2 Physical geography between 1800 and 1950 1.2.3 Physical geography since 1950 1.3 Scientific methods 1.3.1 The positivist method 1.3.2 Critique of the positivist method 1.3.3 Realism as an alternative positivist approach 1.3.4 Benefits of multiple scientific methods in physical geography 1.4 The field, the laboratory and the model 1.4.1 Approaching data collection from the environment 1.4.2 Approaching laboratory work 1.4.3 Approaching numerical modelling 1.5 Using physical geography for managing the environment 1.6 Summary Further reading Part II: Continents and oceans 2 Earth geology and tectonics 2.1 Introduction 2.2 The Earth's structure 2.2.1 The interior of the Earth 2.2.2 The outer layers of the Earth 2.3 Rock type and formation 2.3.1 Igneous rock 2.3.2 Sedimentary rock 2.3.3 Metamorphic rock 2.3.4 The rock cycle 2.4 History of plate tectonics 2.4.1 Early ideas of global tectonics 2.4.2 Evidence that led directly to plate tectonic theory 2.5 The theory of plate tectonics 2.5.1 Lithospheric plates 2.5.2 Rates of plate movement 2.6 Structural features related directly to motion of the plates 2.6.1 Divergent plate boundaries 2.6.2 Transform faults 2.6.3 Convergent plate boundaries 2.6.4 Hot spots 2.7 The history of the continents 2.8 Summary Further reading 3 Oceans 3.1 Introduction 3.2 The ocean basins 3.2.1 The scale of the oceans 3.2.2 Geological structure of the ocean basins 3.2.3 The depth and shape of the ocean basins 3.3 Physical properties of the ocean 3.3.1 Salinity 3.3.2 Temperature structure of the oceans 3.4 Ocean circulation 3.4.1 Surface currents 3.4.2 The deep currents of the oceans 3.4.3 The weather of the ocean 3.5 Sediments in the ocean 3.6 Biological productivity 3.6.1 Photosynthesis in the ocean 3.6.2 Importance of nutrient supply to primary productivity 3.6.3 Animals of the sea 3.6.4 Pollution 3.7 Effect of global climate change on the oceans 3.8 Summary Further reading Part III: Past, present and future climate and weather 4 The Pleistocene 4.1 Introduction 4.2 Long-term cycles, astronomical forcing and feedback mechanisms 4.2.1 Orbital forcing theory 4.2.2 Evidence that orbital forcing causes climate change 4.2.3 Problems with orbital forcing theory 4.2.4 Internal feedback mechanisms 4.3 Short-term cycles 4.3.1 Glacial instability 4.3.2 The Younger Dryas 4.4 Further evidence for environmental change 4.4.1 Landforms 4.4.2 Plants 4.4.3 Insects 4.4.4 Other animal remains 4.5 Dating methods 4.5.1 Age estimation techniques 4.5.2 Age equivalent labels 4.5.3 Relative chronology 4.6 Pleistocene stratigraphy and correlation 4.7 Palaeodimate modelling 4.8 Summary Further reading 5 The Holocene 5.1 Introduction 5.2 Holocene climatic change 5.2.1 How the Holocene began 5.2.2 Drivers of climate change during the Holocene 5.2.3 The Little Ice Age 5.3 Holocene geomorphological change 5.3.1 Retreating ice sheets 5.3.2 Rising seas 5.4 Holocene ecosystem change 5.4.1 Responses of ecosystems to the end of the last glacial 5.4.2 Tropical Africa and the Sahara 5.4.3 European ecosystems 5.4.4 Island ecosystems 5.5 The rise of civilizations 5.5.1 Humans at the end of the last glacial 5.5.2 The beginnings of agriculture 5.5.3 Social and environmental consequences of agriculture 5.6 Human interaction with physical geography 5.6.1 Out of Eden? 5.6.2 Deforestation 5.6.3 Soil erosion and impoverishment 5.6.4 Irrigation and drainage 5.7 Summary Further reading 6 Atmospheric processes 6.1 Introduction 6.2 The basics of climate 6.3 The global atmospheric circulation 6.4 Radiative and energy systems 6.4.1 The nature of energy 6.4.2 Distinguishing between temperature and heat 6.4.3 Radiation 6.4.4 Thermal inertia 6.4.5 The atmospheric energy balance 6.5 Moisture circulation systems 6.5.1 Moisture in the atmosphere and the hydrological cycle 6.5.2 Global distribution of precipitation and evaporation 6.5.3 The influence of vegetation on evaporation 6.5.4 Drought 6.6 Motion in the atmosphere 6.6.1 Convective overturning 6.6.2 The Earth's rotation and the winds 6.6.3 Long waves. Planetary Waves and Rossby Waves 6.6.4 Jet streams 6.7 The influence of oceans and ice on atmospheric processes 6.8 The Walker circulation 6.8.1 El Niño Southern Oscillation 6.8.2 North Atlantic Oscillation 6.9 Interactions between radiation, atmospheric trace gases and clouds 6.9.1 The greenhouse effect 6.9.2 A simple climate model of the enhanced greenhouse effect 6.9.3 Radiative interactions with clouds and sulfate aerosols 6.10 Ceoengineering 6.11 Summary Further reading 7 Contemporary climate change 7.1 Introduction 7.2 Climate change 7.2.1 Long-term change 7.2.2 Recent climate change and its causes 7.2.3 Predictions from global climate models (GCMs) 7.2.4 Critical evaluation of the state-of-the-art in GCMs 7.3 The carbon cycle: interaction with the climate system 7.4 Mitigation 7.5 Destruction of the ozone layer by chlorofluorocarbons (CFCs) 7.6 The future 7.7 Summary Further reading 8 Global climate and weather 8.1 Introduction 8.2 General controls of global climates 8.3 The tropics and subtropics 8.3.1 Equatorial regions 8.3.2 The Sahel and desert margins 8.3.3 Subtropical deserts 8.3.4 Humid subtropics 8.4 Mid and high-latitude climates 8.4.1 Depressions, fronts and anticyclones 8.4.2 Mid-latitude western continental margins 8.4.3 Mid-latitude east continental margins and continental interiors 8.5 Polar climates 8.6 A global overview 8.7 Summary Further reading 9 Regional and local climates 9.1 Introduction 9.2 Altitude and topography 9.2.1 Pressure 9.2.2 Temperature 9.2.3 Wind 9.2.4 Precipitation 9.2.5 Frost hollows 9.3 Influence of water bodies 9.4 Human influences 9.4.1 Shelter belts 9.4.2 Urban climates 9.4.3 Atmospheric pollution and haze 9.5 Summary Further reading Part IV: Biogeography and ecology 10 The biosphere 10.1 Introduction 10.2 Biological concepts 10.2.1 What is a species? 10.2.2 The naming of species 10.2.3 Levels of organization 10.2.4 Biodiversity 10.3 Patterns of distribution 10.3.1 Potential species distributions 10.3.2 Actual species distributions 10.3.3 Spatial patterns in biodiversity 10.4 Terrestrial biomes 10.4.1 Equatorial and tropical forests 10.4.2 Savanna 10.4.3 Hot Desert 10.4.4 Mediterranean-type biome 10.4.5 Temperate grassland 10.4.6 Temperate broadleaf forest 10.4.7 Taiga 10.4.8 Tundra 10.5 Aquatic biomes 10.5.1 Marine regions 10.5.2 Freshwater regions 10.6 Summary Further reading 11 Ecosystem processes 11.1 Introduction 11.2 The flow of energy and resources 11.2.1 Energy entering an ecosystem 11.2.2 Ecological thermodynamics 11.2.3 Trophic levels and food webs 11.2.4 Biogeochemical cycles 11.3 Biotic interactions 11.3.1 Mutualism 11.3.2 Herbivory, prédation and parasitism 11.3.3 Commensalism 11.3.4 Amensalism 11.3.5 Competition 11.4 Temporal change in ecosystems 11.4.1 Short-term changes 11.4.2 Disturbance and resilience 11.4.3 Succession 11.5 Human impact 11.5.1 Degrading ecosystems 11.5.2 Urban ecology 11.5.3 Conservation 11.6 Summary Further reading 12 Freshwater ecosystems 12.1 Introduction 12.2 Running waters: rivers and streams 12.2.1 River ecosystem geomorphological units 12.2.2 Spatial variability of river ecosystems 12.2.3 Temporal variability of river ecosystems 12.2.4 Human alterations to river ecosystems 12.3 Still waters: lakes and ponds 12.3.1 Classification of lake ecosystems 12.3.2 Spatial variability of lake ecosystems 12.3.3 Human influences on lake ecosystems 12.4 Summary Further reading 13 Vegetation and env
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  • 33
    Monograph available for loan
    Monograph available for loan
    New York, NY : Cambridge University Press
    Call number: AWI A6-17-90616
    Type of Medium: Monograph available for loan
    Pages: xxxiv, 432 Seiten , Illustrationen, graphische Darstellungen
    Edition: First published
    ISBN: 9781107118140
    Language: English
    Note: Contents: Lists of figures. - List of contributors. - Preface. - 1. Challenges for ice age dynamics: a dynamical systems perspective / Michel Crucifix, Guillaume Lenoir and Takahito Mitsui. - 2. Tipping points in the climate system / Peter Ditlevsen. - 3. Atmospheric teleconnection patterns / Steven B. Feldstein and Christian L. E. Franzke. - 4. Atmospheric regimes: the link between weather and the large scale circulation / David M. Straus, Franco Molteni and Susanna Corti. - 5. Low-frequency regime transitions and predictability of regimes in a barotropic model / Balu T. Nadiga and Terence J. O'Kane. - 6. Complex network techniques for climatological data analysis / Reik V. Donner, Marc Wiedermann and Jonathan F. Donges. - 7. On inference and validation of causality relations in climate teleconnections / Illia Horenko, Susanne Gerber, Terence J. O'Kane, James S. Risbey and Didier P. Monselesan. - 8. Stochastic climate theory / Georg A. Gottwald, Daan T. Crommelin and Christian L. E. Franzke. - 9. Stochastic subgrid modelling for geophysical and three-dimensional turbulence / Jorgen S. Frederiksen, Vassili Kitsios, Terence J. O'Kane and Meelis J. Zidikheri. - 10. Model error in data assimilation / John Harlim. - 11. Long-term memory in climate: detection, extreme events, and significance of trends / Armin Bunde and Josef Ludescher. - 12. Fractional stochastic models for heavy tailed, and long-range dependent, fluctuations in physical systems / Nicholas W. Watkins. - 13. Modelling spatial extremes using Max-Stable Processes / Mathieu Ribatet. - 14. Extreme value analysis in dynamical systems: two case studies / Tamás Bódai. - Index.
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  • 34
    Series available for loan
    Series available for loan
    Bremerhaven : Alfred-Wegener Inst. für Polar- und Meeresforschung
    Associated volumes
    Call number: ZSP-168-99
    In: Berichte zur Polarforschung
    Type of Medium: Series available for loan
    Pages: 241 S. : graph. Darst., Kt.
    ISSN: 0176-5027
    Series Statement: Berichte zur Polarforschung 99
    Language: English
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  • 35
    Call number: AWI G9-94-0096
    Type of Medium: Monograph available for loan
    Pages: XII, 796 Seiten , Illustrationen
    ISBN: 4887041098
    Language: English
    Note: Contents 1. Crustal Evolution: East Antarctic Shield Archaean Events in Antarctica / L. P. BLACK, J. W. SHERATON and P. D. KINNY Metamorphic Evolution of the Sør Rondane Mountains, East Antarctica / M. ASAMI, Y. OSANAI, K. SHIRAISHI and H. MAKIMOTO Geochemical Characteristics of Metamorphic Rocks from the Central Sør Rondane Mountains, East Antarctica / Y. OSANAI, K. SHIRAISHI, Y. TAKAHASHI, H. ISHIZUKA, Y. TAINOSHO, N. TSUCHIYA, T. SAKIYAMA and S. KODAMA Sm-Nd and Rb-Sr Ages of Metamorphic Rocks from the Sør Rondane Mountains, East Antarctica / K. SHIRAISHI and H. KAGAMI Reconnaissance Geochronologic Data on Proterozoic Polymetamorphic Rocks of the Eastern Sør Rondane Mountains, East Antarctica / E. S. GREW, W. I. MANTON, M. ASAMI and H. MAKIMOTO Petrochemical Character and Rb-Sr Isotopic Investigation of the Granitic Rocks from the Sør Rondane Mountains, East Antarctica / Y. T AINOSHO, Y. TAKAHASHI, Y. ARAKAWA, Y. OSANAI, N. TSUCHIYA, T. SAKIYAMA and M. OWADA Carbon and Oxygen Isotopic Compositions of Marbles from the Sør Rondane Mountains, East Antarctica / N. TSUCHIYA, Y. OSANAI and H. WADA 40Ar-39Ar Geochronological Studies on some Paleomagnetic Samples of East Antarctica / Y. T AKIGAMI, M. FUN AKI and K. TOKIEDA The First Report of a Cambrian Orogenic Belt in East Antarctica - An Ion Microprobe Study of the Lützow-Holm Complex / K. SHIRAISHI, Y. HIROI, D. J. ELLIS, C. M. FANNING, Y. MOTOYOSHI and Y. NAKAI A New Insight of Possible Correlation between the Lützow-Holm Bay Granulites (East Antarctica) and the Sri Lankan Granulites / Y. OGO, Y. HIROI, K. B. N. PRAME and Y. MOTOYOSHI Osumilite-Producing Reactions in High Temperature Granulites from the Napier Complex, East Antarctica: Tectonic Implications / B. J. HENSEN and Y. MOTOYOSHI Gneisses of the Porthos and Athos Ranges, Northern Prince Charles Mountains, East Antarctica: Constraints on the Prograde and Retrograde P-T Path / D. E. THOST and B. J. HENSEN Mineral Reaction Textures in High-Grade Gneisses: Evidence for Contrasting Pressure-Temperature Paths in the Proterozoic Complex of East Antarctica / I. C. W. FITZSIMONS and S. L. HARLEY Mode of Occurrence, Geochemistry and Mineral Textures of Mafic to Ultramafic Rocks from the Bolingen Islands, Prydz Bay, East Antarctica / D. E. THOST, Y. MOTOYOSHI and B. J. HENSEN The Significance of Reworking, Fluids and Partial Melting in Granulite Metamorphism, East Prydz Bay, Antarctica / S. L. HARLEY, I. C. W. FITZSIMONS, I. S. BUICK and G. WATT Stable Isotope Studies of Granulite Facies Metamorphism in the Rauer Group, East Antarctica / I. S. BUICK, S. L. HARLEY and D. MATTEY A Late-Proterozoic Extensional-Compressional Tectonic Cycle in East Antarctica / J. D. HOEK, P. H. G. M. DIRKS and C. W. PASSCHIER Re-Examination of the Metamorphic Evolution of the Larsemann Hills, East Antarctica / L. REN, Y. ZHAO, X. LIU and T. CHEN Geochronology of the Late Granite in the Larsemann Hills, East Antarctica / Y. ZHAO, B. SONG, Y. WANG, L. REN, J. LI and T. CHEN The First Study of Upper Mantle Inclusions from the Prince Charles Mountains, East Antarctica / A. V. ANDRONIKOV Mafic Igneous Suites in the Lambert Rift Zone / E. V. MIKHALSKY, A. V. ANDRONIKOV and B. V. BELIATSKY Granitic Rocks of the Jetty Peninsula, Amery Ice Shelf Area, East Antarctica / W. I. MANTON, E. S. GREW, J. HOFMANN J. W. SHERATON Paleomagnetic and 40 Ar/39 Ar Dating Studies of the Mawson Charnockite and Some Rocks from the Christensen Coast / M. FUNAKI and K. SAITO 2. Crustal Evolution: Transantarctic Mountains and West Antarctica Multiple Petrotectonic Events in High-Grade Metamorphic Rocks of the Nimrod Group, Central Transantarctic Mountains, Antarctica / J. W. GOODGE, V. L. HANSEN and S. M. PEACOCK Metamorphic Facies of the Ross Orogeny in the Southern Wilson Terrane of Northern Victoria Land, Antarctica / F. TALARICO, M. FRANCESCHELLI, B. LOMBARDO, R. PALMERI, P. C. PERTUSATI, N. RASTELLI and C. A. RICCI Metasedimentary Rocks of Western Wilson Terrane (Victoria Land - Oates Land) and Gondwana Connections to Australia / D. N. B. SKINNER Compressional Causes for the Early Paleozoic Ross Orogen - Evidence from Victoria Land and the Shackleton Range / G. KLEINSCHMIDT, W. BUGGISCH and T. FLOETTMANN Pre-Beacon Tectonic Development of the Transantarctic Mountains / E. STUMP Statistical Analysis of Geochemical Patterns in Fine-Grained Permian Mudrocks from the Beardmore Glacier Region, Antarctica / T. C. HORNER and L. A. KRlSSEK Stratigraphy and Sedimentology of Vertebrate Bone-Bearing Beds in the Triassic (and Jurassic?) Fremouw and Falla Formations, Beardmore Glacier Region, Antarctica / L. A. KRISSEK, T. C. HORNER, D. H. ELLIOT and J. W. COLLINSON Early Paleozoic Lamprophyre Dikes of Southern Victoria Land: Geology, Petrology and Geochemistry / B. Wu and J. H. BERG Crustal Xenoliths from Cape McCormick Crater, Northern Victoria Land / J. H. BERG and B. Wu Xenoliths from the Volcanic Province of West Antarctica and Implications for Lithospheric Structure and Processes / R. J. WYSOCZANSKI and J. A. GAMBLE Geological and Geophysical Exploration in the Northern Ford Ranges, Marie Byrd Land, West Antarctica / B. P. LUYENDYK, S. M. RICHARD, C. H. SMITH and D. L. KIMBROUGH Structure and Cooling History of the Fosdick Metamorphic Complex, Marie Byrd Land, West Antarctica / S. M. RICHARD Metapelites and Migmatites at the Granulite Facies Transition, Fosdick Metamorphic Complex, Marie Byrd Land, West Antarctica / C. H. SMITH 3. Syn- and Post-Breakup of Gondwana Mesozoic and Cenozoic Kinematic Evolution of the Transantarctic Mountains / T. J. WILSON The West Antarctic Rift System - A Propagating Rift "Captured" by a Mantle Plume? / J. C. BEHRENDT, W. LEMASURIER and A. K. COOPER Apatite Fission Track Evidence for Contrasting Thermal and Uplift Histories of Metamorphic Basement Blocks in Western Dronning Maud Land / J. JACOBS, E. HEJL, G. A. WAGNER and K. WEBER Early Cretaceous Uplift of the Southern Sentinel Range, Ellsworth Mountains, West Antarctica / P. G. FITZGERALD and E. STUMP Petrologic Comparison of Paleozoic Rocks from the English Coast, Eastern Ellsworth Land, and the Ellsworth Mountains / T. S. LAUDON and C. CRADDOCK Provenance of Paleocene Strata, Seymour Island / D. H. ELLIOT, S. M. HOFFMAN and D. E. RIESKE Sedimentology of the Miers Bluff Formation, Livingston Island, South Shetland Islands / A. ARCHE, J. LOPEZ-MARTINEZ and E. MARTINEZ DE PISON Late Cretaceous and Eocene Palynofloras from Fildes Peninsula, King George Island (South Shetland Islands), Antarctica / L. CAO Early Tertiary Palaeoclimate of King George Island, Antarctica - Evidence from the Fossil Hill Flora / H.M. LI Modes of Formation and Accretion of Oceanic Material in the Mesozoic Fore-Arc of Central and Southern Alexander Island, Antarctica: A Summary / P.A. DOUBLEDAY and T. H. TRANTER The Magmatic Complexes of the Rouen Mountains and Elgar Uplands from Alexander Island, Antarctic Peninsula: Geochemical Constraints / B. K. KAMENOV and C. T. PIMPIREV Transverse Variations in the Gerlache Strait Plutonic Rocks: Effects of the Aluk Ridge-Trench Collision in the Northern Antarctic Peninsula / M.A. PARADA, J.-B. ORSINI and R. ARDILA 4. Recent Tectonics of Antarctic Peninsula and Subantarctic Regions Evolution of the Bransfield Basin and Rift, West Antarctica / K. BIRKENMAJER Uplift Movements in King George Island Associated Bransfield Rift Activity / M. ARANEDA and O. GONZALEZ-FERRAN Geotransect Drake Passage - Weddell Sea, Antarctica / R. A. J. TROUW and L. A. P. GAMBOA Long-Range Sidescan Sonar (GLORIA) Survey of the Antarctic Peninsula Pacific Margin / J. S. TOMLINSON, C. J. PUDSEY, R. A. LIVERMORE, R. D. LARTER and P. F. BARKER Marine Magnetic Anomalies in Bransfield Strait, Antarctica / Y. KIM, T. W. CHUNG and S. H. NAM Geochronology and Geochemistry of the Igneous Rocks from Barton and Fildes Peninsulas, King George Island: A Review / Y.-J. JWA, B.-K. PARK and Y. KIM Geophysical Features of Deception Island / R. ORT
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  • 36
    Call number: AWI A6-92-0494
    In: Synoptic-Dynamic Meteorology in Midlatitudes, Vol. 1
    Type of Medium: Monograph available for loan
    Pages: XIII, 431 S. , Ill., graph. Darst
    ISBN: 0195062671
    Language: English
    Note: Contents: 1. INTRODUCTION. - 1.1 What is Synoptic Meteorology?. - 1.1.1 Historical background. - 1.1.2 Classification of atmospheric phenomena. - 1.1.3 Atmospheric phenomena as fractals. - 1.1.4 The role of observations and theory. - 1.1.5 The mystery of synoptic meteorology. - 1.1.6 The organization of this text. - 1.2 Units and Variables. - 1.2.1 The MKS system. - 1.2.2 The MTS system. - 1.2.3 Other useful conversion factors. - 1.3 Coordinate Systems. - 1.3.1 Cartesian coordinates. - 1.3.2 Natural coordinates. - 1.3.3 The representation of the wind field. - 1.3.4 Pressure coordinates. - 1.3.5 Isentropic coordinates. - 1.3.6 σ coordinates. - 1.3.7 Invariance. - 1.3.8 The total derivative. - Note. - References. - 2. SCALAR FIELDS AND THEIR KINEMATICS. - 2.1 The Pressure (Height) Field. - 2.1.1 What is kinematics?. - 2.1.2 A description of features in the pressure (height) field. - 2.1.3 Analysis of the pressure (height) field. - 2.1.4 Kinematics of the pressure (height) field. - 2.1.5 The hydrostatic equation and the reduction of pressure to a reference level. - 2.2 The Temperature and Moisture Fields. - 2.3 The Measurement of Scalar Fields. - 2.3.1 Introduction. - 2.3.2 The measurement of pressure. - 2.3.3 The measurement of height. - 2.3.4 The measurement of temperature. - 2.3.5 The measurement of humidity. - 2.3.6 Clouds. - 2.3.7 The measurement of precipitation. - 2.3.8 Instrument platforms. - Notes. - References. - Problems. - 3. KINEMATICS OF THE WIND FIELD. - 3.1 Properties of the Horizontal Wind Field. - 3.1.1 The decomposition of a linear wind field. - 3.1.2 Translation. - 3.1.3 Divergence. - 3.1.4 Vorticity. - 3.1.5 Deformation. - 3.1.6 Summary. - 3.1.7 Trajectories. - 3.2 The Computation of Divergence, Vorticity, and Deformation. - 3.2.1 The expressions for divergence, vorticity, and deformation on the Earth's surface. - 3.2.2 Finite-difference computations. - 3.2.3 Integral computations of divergence, vorticity, and deformation. - 3.2.4 The linear vector point function method. - 3.3 Properties of the Three-Dimensional Wind Field. - 3.4 Measuring the Wind Field. - 3.4.1 Introduction. - 3.4.2 Wind-measuring instruments: Dependence of the properties of an object upon wind speed. - 3.4.3 Wind-measuring instruments: The tracking of tracers moving with the horizontal component of the wind. - Notes. - References. - Problems. - 4. ELEMENTARY ATMOSPHERIC DYNAMICS AND THERMODYNAMICS. - 4.1 The Law of Motion. - 4.1.1 The equation of fluid motion on a rotating sphere: Vector form. - 4.1.2 The equations of fluid motion on a rotating sphere: Scalar form. - 4.1.3 The geostrophic wind. - 4.1.4 The isallobaric wind and the inertial-advective wind. - 4.1.5 The equations of motion in natural coordinates. - 4.1.6 The thermal wind. - 4.2 The Equation of Continuity. - 4.2.1 The equation of continuity in height coordinates. - 4.2.2 The equation of continuity in pressure coordinates. - 4.2.3 The equation of continuity in isentropic coordinates. - 4.2.4 The kinematic boundary condition. - 4.2.5 The dynamic boundary condition. - 4.3 The Thermodynamic Equation. - 4.3.1 Dry thermodynamics. - 4.3.2 Moist thermodynamics. - 4.4 Friction. - 4.4.1 Molecular friction. - 4.4.2 Turbulent friction. - 4.4.3 The surface boundary layer. - 4.4.4 The friction layer. - 4.4.5 The turbulent transport of general quantities. - 4.4.6 The antitriptic wind. - 4.5 The Vorticity Equation. - 4.5.1 Derivation of the vorticity equation in height coordinates. - 4.5.2 The Bjerknes and Kelvin circulation theorems. - 4.5.3 Physical interpretation of the vorticity equation and the circulation theorems. - 4.5.4 The vorticity equation in pressure coordinates. - 4.5.5 The vorticity equation in isentropic coordinates and Ertel's potential vorticity. - 4.5.6 The horizontal vorticity equation. - 4.5.7 The three-dimensional vorticity equation in a compressible atmosphere. - 4.6 Energetics. - 4.7 Thermodynamic Retrieval. - References. - Problems. - 5. QUASIGEOSTROPHIC THEORY. - 5.1 Introduction. - 5.2 Estimating the Terms in the Vorticity and Thermodynamic Equations. - 5.2.1 Substitution of the analytical-model equations into the vorticity and thermodynamic equations. - 5.2.2 The relationship between w and ω. - 5.2.3 The kinematic boundary conditions for midlatitude, synoptic-scale systems. - 5.2.4 A simplified vorticity equation. - 5.2.5 The thermodynamic equation for synoptic-scale systems in the midlatitudes. - 5.2.6 The effects of diabatic heating and static stability. - 5.3 Estimating Vertical Motion from the Observed Wind and Mass Fields. - 5.3.1 The kinematic method. - 5.3.2 The adiabatic method. - 5.3.3 The vorticity method. - 5.3.4 Satellite infrared photograph technique. - 5.4 Estimating Local Height Tendencies from the Observed Wind and Mass Fields. - 5.5 The Quasigeostrophic Vorticity and Thermodynamic Equations. - 5.5.1 The quasigeostrophic approximation. - 5.5.2 The quasigeostrophic vorticity and thermodynamic equations. - 5.5.3 The quasigeostrophic equations of motion. - 5.6 Derivation of the Quasigeostrophic ω and Height-tendency Equations. - 5.6.1 The quasigeostrophic vorticity and thermodynamic equations expressed in terms of the height field. - 5.6.2 The quasigeostrophic ω equation. - 5.6.3 The quasigeostrophic height-tendency equation. - 5.6.4 The quasigeostrophic ω equation and height-tendency equation with diabatic heating and friction. - 5.7 Interpretation of the Quasigeostrophic ω-Equation. - 5.7.1 Mathematical interpretation. - 5.7.2 Physical interpretation. - 5.7.3 The Trenberth formulation of the quasigeostrophic ω equation. - 5.7.4 The Q-vector representation of the quasigeostrophic ω equation. - 5.7.5 Comparison of the different quasigeostrophic ω equations. - 5.8 The Quasigeostrophic Potential Vorticity Form of the Height-Tendency Equation. - 5.9 Static-Stability Effects on Vertical Motion. - 5.9.1 The effects of horizontal variations in static stability on vertical motion. - 5.9.2 Effective static stability. - 5.10 Interpretation of the Quasigeostrophic Height-Tendency Equation. - 5.10.1 Mathematical interpretation. - 5.10.2 Physical interpretation. - 5.11 The Effects of Vertical Variations in Static Stability on the Geopotential-Height Tendency. - Note. - References. - Problems. - Selected Answers to Problems. - Appendix 1. Review of Vector Notation. - Appendix 2. Implications of Hydrostatic Balance for the Horizontal and Vertical Scales of Meteoro­logical Phenomena. - Appendix 3. Matrix Notation. - Index.
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  • 37
    Call number: AWI G5-98-0150
    Type of Medium: Monograph available for loan
    Pages: XVII, 386 Seiten , Illustrationen , 23 cm
    ISBN: 0521361095
    Series Statement: Cambridge Studies in Ecology
    Language: English
    Note: Contents Preface Acknowledgements 1 Introduction 1.1 Glacier forelands and simplicity 1.2 Ecology and primary succession 1.3 Space-for-time substitution (chronosequences) 1.4 Geoecology (landscape ecology) 2 The nature of the timescale 2.1 Glacier variations 2.2 Dating techniques 2.2.1 Historical sources 2.2.2 Biological dating 2.2.3 Physico-chemical dating 2.3 Terrain age sequences and areal chronologies 3 The physical landscape 3.1 The legacy of glaciation 3.1.1 Glacial erosion 3.1.2 Glacial sediments 3.1.3 Depositional landforms and landsystems 3.2 Proglacial landscape modification 3.2.1 Glacio-fluvial activity 3.2.2 Consolidation and slope stabilization 3.2.3 Pervection 3.2.4 Cryogenic processes: frost weathering 3.2.5 Frost-heave and frost-sorting 3.2.6 Solifluction and other periglacial slope processes 3.2.7 Nivation 3.2.8 Aeolian processes 3.3 The climatic environment 3.3.1 Regional climate 3.3.2 Meso-scale climatic gradients 3.3.3 Microclimate 3.3.4 Climatic change 3.4 Spatial variation and change in the physical landscape 3.4.1 Spatial patterns at various scales 3.4.2 Physical processes and landscape change 4 Soil development 4.1 Soil chronosequences and chronofunctions 4.1.1 Conceptual framework 4.1.2 An example: Glacier Bay, Alaska 4.2 Soil properties and pedogenic processes 4.2.1 Texture 4.2.2 Micromorphology 4.2.3 Organic content 4.2.4 pH and base status 4.2.5 Iron and aluminium 4.2.6 Chemical weathering processes 4.2.7 Nitrogen 4.2.8 Phosphorus 4.3 Environmental controls on pedogenesis 4.3.1 Parent material 4.3.2 Topography 4.3.3 Biota 4.3.4 Climatic controls 4.4 Soil formation in time and space 4.4.1 Soil development and equilibrium concepts 4.4.2 Spatial variation and soil chronosequences 5 Plant succession: patterns and environmental factors 5.1 Vegetational chronosequences: methodological considerations 5.1.1 Concept and limitations 5.1.2 Tests of chronoseauences: observed successions 5.1.3 Tests of chronosequences: retrospective analysis 5.2 Inferred successional trends 5.2.1 Cover 5.2.2 Spatial organization 5.2.3 Stratification and physiognomy 5.2.4 Biomass 5.2.5 Species diversity 5.2.6 Species composition and successional stages 5.2.7 Population attributes and physiological traits 5.3 Spatial variation and successional pathways 5.3.1 Within-foreland patterns: mapping 5.3.2 Quantitative community analysis at Storbreen, Jotunheimen 5.3.3 Inferred successional pathways elsewhere 5.3.4 Between-foreland patterns: a comparative approach 5.4 Environmental controls on successional sequences 5.4.1 Initial site conditions 5.4.2 Environmental factors as influx variables 5.4.3 Environmental factor complexes 6 Plant succession: processes and models 6.1 Biological processes of colonization and succession 6.1 Migration 6.2 Ecesis 6.3 Reaction 6.4 Facilitation 6.5 Competition 6.6 Allelopathy, herbivory and pathogens 6.7 Stabilization 6.2 Models 6.2.1 Monoclimax and polyclimax 6.2.2 Climax pattern and site climax 6.2.3 Relay floristics and IFC 6.2.4 Non-selective and selective autosuccession 6.2.5 Facilitation, tolerance and inhibition 6.2.6 Chronic disturbance, competitive hierarchy and resource ratio 6.2.7 Evolutionary strategies 6.2.8 Vital attributes, process interactions and a causal hierarchy 6.3 A geoecological model 6.3.1 Coupling of physical and biological processes 6.3.2 Spatio-temporal dynamics 7 The ecological significance of recently-deglaciated terrain 7.1 Chronosequences 7.2 The geoecological approach 7.3 Some broader implications References Index
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  • 38
    Monograph available for loan
    Monograph available for loan
    Chichester : Wiley
    Call number: AWI G8-92-0460
    Description / Table of Contents: Designed to help anyone involved with small-scale geophysical surveys, this handbook has been written at a level suitable for undergraduate students of geology and geophysics, as well as professional workers in the field. It contains a wealth of practical information based upon the author's many years of field experience as a consultant geophysicist. Essential field techniques and associated equipment are described with particular emphasis being given to practical limitations, common problems and pitfalls. The author has provided many useful examples, tables, checklists and illustrations, making the book concise and easy to use.
    Type of Medium: Monograph available for loan
    Pages: VII, 182 Seiten , Illustrationen
    Edition: Reprinted
    ISBN: 0471932485
    Series Statement: Geological Society of London handbook
    Language: English
    Note: Contents Preface 1 Introduction 1.1 Fields 1.2 Geophysical equipment 1.3 Geophysical data 1.4 Bases and base networks 2 Gravity method 2.1 Physical basis of the gravity method 2.2 Gravity meters 2.3 Gravity reductions 2.4 Gravity surveys 2.5 Field interpretation 3 Magnetic method 3.1 Magnetic properties 3.2 The magnetic field of the Earth 3.3 Magnetic instruments 3.4 Magnetic survey practice 3.5 5 imple magnetic interpretation 4 Radioactivity surveys 4.1 Natural radiation 4.2 Radiation detectors 4.3 Radiometric surveys 5 Electric current methodsgeneral considerations 5.1 Resistivity 5.2 Electrode arrays 5.3 Equipment for resistivity surveys 6 Direct-current methods 6.1 SP surveys 6.2 Resistivity profiling 6.3 Resistivity depth-sounding 7 Induced polarization 7.1 Polarization fundamentals 7.2 Time-domain IP surveys 7.3 Frequency-domain surveys 7.4 Handling IP data 8 Electromagnetic methods 8.1 Induction principles 8.2 Continuous-wave systems 8.3 Other e.m. techniques 9 VLF methods 9.1 VLF radiation 9.2 VLF instruments 9.3 VLF maps 10 Seismic methods - general considerations 10.1 Seismic waves 10.2 Seismic sources 10.3 Detection of seismic waves 10.4 Recording seismic waves 11 Seismic reflection 11.1 Reflection theory 11.2 Reflection surveys 12 Seismic refraction 12.1 Refraction surveys 12.2 Field interpretation 12.3 Limitations of the refraction method Appendix Terrain corrections for Hammer zones B to M References and further reading Index
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  • 39
    Series available for loan
    Series available for loan
    Boulder, Colo. : National Center for Atmospheric Research
    Associated volumes
    Call number: AWI A6-16-90344
    In: NCAR technical notes / National Center for Atmospheric Research : STR ; 366
    Type of Medium: Series available for loan
    Pages: 256 S , Ill., graph. Darst
    Series Statement: NCAR-TN 366 : STR
    Language: English
    Note: Table of Contents: 1. Data description. - Origin. - Changes in Operational Analysis Systems. - Geopotential grid processing. - Temperature, wind and wave flux calculations. - 2. Statistical calculations. - 3. References. - 4. Results. - Monthly average meridional cross sections. - Means and variances of zonal mean winds, temperatures and wave fluxes, plus stationary and transient wave statistics. - Hemispheric polar projections for January, April, July and October. - Mean geopotential height, temperature, wind speed and daily geopotential variance maps for 700, 500, 300, 100, 50, 10 and 1 mb. - Ensemble average latitude-time diagrams. - Zonal mean winds and temperatures, and stationary and transient eddy geopotential height, temperature and wave flux quantities. - Ensemble average height-time diagrams. - Zonal mean winds and temperatures, and stationary and transient eddy geopotential heights and temperatures. - Latitude-time and height-time diagrams of zonal winds and rms geopotential, height wave amplitudes for individual years 1979-1990. - Tables of monthly mean temperatures and zonal winds.
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