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  • Books  (26)
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  • 1
    GFZ publications
    GFZ publications
    Potsdam : Geoforschungszentrum
    Associated volumes
    Call number: 21/STR 97/02
    In: Scientific technical report
    Type of Medium: GFZ publications
    Pages: 12 S.
    Series Statement: Scientific technical report / Geoforschungszentrum Potsdam 97,2
    Classification:
    Photogrammetry, Remote Sensing
    Language: English
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  • 2
    Call number: 21/STR 97/11
    In: Scientific technical report
    Type of Medium: GFZ publications
    Pages: 135 S.
    Series Statement: Scientific technical report / Geoforschungszentrum Potsdam 97,11
    Classification:
    Geochemistry
    Language: German
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  • 3
    Monograph available for loan
    Monograph available for loan
    Amsterdam [u.a.] : Elsevier
    Associated volumes
    Call number: 10/M 09.0224
    In: Developments in geochemistry
    Description / Table of Contents: Contents: 1. The Discovery of Silicate Melts. An Industrial and Geological Perspective. 2. Glass Versus Melt. 3. Glasses and Melts vs. Crystals. 4. Melt and Glass Structure - Basic Concepts. 5. Silica - A Deceitful Simplicity. 6. Binary Metal Oxide-Silica Systems I. Physical Properties.7. Binary Metal Oxide-Silica Systems II. Structure. 8. Aluminosilicate Systems I. Physical Properties. 9. Aluminosilicate Systems II. Structure. 10. Iron-bearing Melts I. Physical Properties. 11. Iron-bearing Melts II. Structure. 12. The Titanium Anomalies. 13. Phosphorus. 14. Water - An Elusive Component. 15. Volatiles I. The System C-O-H-S. 16. Volatiles II. Noble Gases and Halogens. 17. Natural Melts.
    Type of Medium: Monograph available for loan
    Pages: xv, 544 S.
    ISBN: 0444520112
    Series Statement: Developments in geochemistry 10
    Classification:
    Geochemistry
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  • 4
    Call number: 21/STR 96/13
    In: Scientific Technical Report STR
    Type of Medium: GFZ publications
    Pages: 24 S.
    Series Statement: Scientific Technical Report STR 96/13
    Classification:
    Photogrammetry, Remote Sensing
    Language: English
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  • 5
    Monograph available for loan
    Monograph available for loan
    London [u.a.] : Chapman & Hall
    Call number: M 97.0142 ; 10/M 97.0143
    Type of Medium: Monograph available for loan
    Pages: xiii, 522 S.
    ISBN: 0412752808
    Classification:
    Geochemistry
    Language: English
    Location: Upper compact magazine
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  • 6
    Monograph available for loan
    Monograph available for loan
    Washington, D.C. : Mineralogical Society of America
    Associated volumes
    Call number: 11/M 97.0491
    In: Reviews in mineralogy
    Description / Table of Contents: Microorganisms cause mineral precipitation and dissolution and control the distribution of elements in diverse environments at and below the surface of the Earth. Conversely, mineralogical and geochemical factors exert important controls on microbial evolution and the structure of microbial communities. This was the rationale for the Short Course on Geomicrobiology presented by the Mineralogical Society of America on October 18 and 19, 1997, at the Alta Peruvian Lodge in Alta, Utah. Minerals have been known and honored since humans realized their essential contributions to the "terra firma" and stone tools thrust our species on the path of cultural evolution. Microbes are the oldest living creatures, probably inhabiting at least a few salubrious environments on the earth as early as 3.8 billion years ago. At this moment in history we are only beginning to appreciate the intimate juxtaposition and interdependence of minerals and microbes. We have been nudged into this position by the realization that our earth is finite, and the recognition of many global environmental problems that minerals and microbes contribute to, both positively and negatively. In addition, our globe may not be the only site in the solar system where 'life' arose, or may persist. What all of these concerns enunciate is that we as scientists only dimly comprehend our own dynamic "terrestrial halls." This short course and volume have been generated with great enthusiasm for grasping as much as possible of the whole panorama of possibilities that involve both the inorganic and biologic realms . Over 3600 mineral species have been defined and their relationships to each other and the environments in which they form have been documented. This vast data base, collected over the past several hundred years and constantly added to and upgraded, is a monument to the research efforts of many geoscientists focused on the inorganic realm. Much of this data has come from investigators intrigued by the novelty, beauty, and versatility of minerals, direct expressions of the chemistry and physics of geologic processes. We are now adding a new dimension to questions of mineral formation, dissolution, and distribution: what were, are, and will be the contributions of microbes to these basic components of the environment. Microbes have also been known for hundreds of years. However, their small size (0.5 to 5 µm in diameter) and the difficulties associated with identifying a species unless it was grown in the laboratory (cultured), precluded thorough analysis. The advent of molecular biology has only recently made it possible to evaluate microbial evolutionary relatedness (phylogeny) and physiological diversity. These techniques are now being applied to study of microbial populations in natural environments. It is becoming very clear that the surface of Earth is populated by far more species of microbes than there are types of minerals. We are now exploring every portion of the globe and finding the relationships under the rubric "geomicrobiology." The ocean deeps are characterized by a diversity of microorganisms, including those associated with manganese nodules. The profusion and concentration of minerals created at ocean ridges and vents matches the variety of microorganisms, large animals, and plants there. The snowy tops of mountain ranges and glaciers of Antarctica harbor not just ice but whole bacterial communities whose cellular types and activities need elucidation. The equatorial jungles and the deserts, with their enormous diversity of ecological niches, further challenge us. The diversity of geographic, geologic, and biologic environments, including some contributed by humans (e.g. mines, air-conditioning equipment), can now also be explored in detail. Modern studies use protocols developed to preserve or measure in situ chemical and physical characteristics. Electron microscopes allow direct characterization of mineral and biological morphology and internal structures. Spectroscopic techniques permit complimentary chemical analysis, including determination of oxidation states, with very high spatial resolution. Other studies quantitatively measure isotopic abudances. These data serve to distinguish biologically mediated, or biologically controlled formation of the mineral from an abiotic process and mechanism. Each ecological niche requires accurate characterization of the mineralogic and biologic entities in order for us to begin to understand the range of dynamic relationships. We can pose many questions. Is the mineral only a substrate, or is its occurrence and stability impacted by microbiologic activity and metabolic requirements? Which minerals are of microbiological rather than inorganic origin and what are the mechanisms by which organisms dictate the morphology and structure of the solid phase formed? How do organic metabolic products bind metals and change their form and distribution, with implications for metal toxicity and geochemical cycles? How do inorganic reactions such as mineral dissolution and precipitation impact microbial populations through control of their physical and chemical environments? Clearly, new and excitingly research areas exist for all varieties of scientists. Although published by the Mineralogical Society of America, the authors of this volume include microbiologists, molecular biologists, biochemists, biophysicists, bioengineers as well as biomineralogists. Here, they bring together their respective expertise and perspectives to provide disciplinary and interdisciplinary background needed to define and further explore the topic of geomicrobiology. The volume is organized so as to first introduce the nature, diversity, and metabolic impact of microorganisms and the types of solid phases they interact with. This is followed by a discussion of processes that occur at cell surfaces, interfaces between microbes and minerals, and within cells, and the resulting mineral precipitation, dissolution, and changes in aqueous geochemistry. The volume concludes with a discussion of the carbon cycle over geologic time. In detail: Nealson and Stahl acquaint us with the basic properties of prokaryotes, including their size and structure. They define the types and ranges of microorganisms and their metabolisms and describe their impacts on some important biogeochemical cycles. Barns and Nierzwicki-Bauer document the phylogenetic relationships and evolution of microorganisms, begging some fundamental questions that might be now just beyond our grasp: What was the 'last common ancestor'? The physiology, biochemistry and ecology of hyperthermophilic, and the many diverse geologically important microbial species from the lithosphere and hydrosphere, as well as some of the techniques employed, are presented. Banfield and Hamers describe and integrate the processes acting on minerals and at surfaces relevant to microorganisms, examining the factors that control mineralogy, mineral forms, and the stability of phases. Surface properties and reaction rates for dissolution, precipitation, and growth of important classes of minerals are discussed. The possible role of mineral surfaces in formation of prebiotic molecules needed to explain the origin of life is examined. Little, Wagner and Lewandowski describe biofilms, an essential interface between microbes and minerals. They demonstrate that these membranes, with their unique morphological and structural attributes, are sites where much activity related to dissolution and/or formation of minerals takes place. Biology makes it possible to move molecules and elements against a gradient. Many questions regarding the transfer of elements from minerals to microbes at this important heterogeneous interface remain. Fortin, Ferris and Beveridge review surface-mediated mineral development by bacteria. Fresh or oceanic waters, anaerobic or aerobic environments provide discretely different ecologies, bacterial entities, and resulting mineralogies. It is obvious from this presentation that investigators have just scratched the surface of microbial mineralization processes. Bazlinski and Moskowitz review the magnetic biominerals and provide insights into the environmental and biological significance of these few tens of nanometer-sized mineral products. The magnetosome chemistry and biochemistry is probably the best understood of any biologically precipitated mineral. Their formation and unique properties underscore the roles these biomaterials play in the rock magnetic record and in geochemical cycles. Tebo, Ghiorse, van Waasbergen, Siering and Caspi contribute data on the roles of Mnminerals and Mn(II) oxidation in geologic environments. Their chapter encompasses molecular genetic and biochemical investigations. Manganese oxides and oxyhydroxides are notoriously difficult to identify and the crystal chemistry of these phases is a research effort on its own. The prospect of learning how microbes utilize the multiple oxidation states of Mn (2+, 3+ and 4+) as a source of energy sharpens the motivation for interdisciplinary study. Manganese is also known as a cofactor in the production and activation of the enzymes that digest large biomolecules that must be the source of the smaller molecular species and ultimately the building blocks of C, N, 0, H required by all species. How have the mechanisms identified in the bacterial systems been transferred up the phylogenetic tree to plants and humans? This is an expanding and intriguing area for further investigation. DeVrind-de Jong and de Vrind address silicate and carbonate deposition by algae (eukaryotic photosynthetic microorganisms). This chapter documents the mechanisms of biomineralization of diatoms and coccoliths. These abundant aquatic organisms are responsible for huge volumes of siliceous sediments and calcium carbonate deposits world wide. The implications of algal biomineralization for climatic variation throughout much of the Earth's history may be quite significant. Stone leads us though a quantitative approach to evaluating reactions between organic molecules and cations. He considers available extracellular organic ligands and the roles these play in uptake of metals. He documents the basic chemical speciation and complexation for several elements, making metal to metal comparisons. Remaining challenges involve coordinating the organic and inorganic results of biologic activity. Following the discussion of biomineralization and interactions between organic compounds and cations, Silver discusses the strategies microorganisms have evolved to deal with toxic metal concentrations in solution. Beyond the fundamental biological significance, this has important implications for understanding microbial populations in contaminated environments. The impact on the geochemical form (speciation) and distribution of elements is also discussed. Nordstrom and Southam summarize sulfide mineral oxidation and dissolution kinetics and devote considerable effort to describing the specific contributions of microorganisms, mostly bacteria. Despite the vast amount of accumulated information, many unanswered questions remain. Barker, Welch and Banfield address weathering of silicate minerals. This topic encompasses not only mineralogy but geomorphology, microbiology, and geochemistry. The necessary interdisciplinary mode of these investigations is highlighted by discussion of the role(s) of bacterial nutrition, groundwater chemistry, and biochemistry. There are obvious implications for hazardous waste storage, a currently daunting and politicized topic that requires predictions over thousands to millions of years. Finally, Des Marais treats the long term evolution of the carbon cycle, adopting a biogeochemical view. He discusses the sources, sinks and the transfer of the element over geologic time. Consideration of such a basic series of questions relating to the partitioning of carbon necessitate interdisciplinary crossovers. It is a fitting conclusion to a dialogue in progress.
    Type of Medium: Monograph available for loan
    Pages: 448 S.
    ISBN: 0-939950-45-6 , 978-0-939950-45-4
    ISSN: 1529-6466
    Series Statement: Reviews in mineralogy 35
    Classification:
    Geochemistry
    Language: English
    Note: Chapter 1. Microorganisms and Biogeochemical Cycles: What Can We Learn from Layered Microbial Communities by Kenneth H. Nealson and David A. Stahl, p. 5 - 34 Chapter 2. Microbial Diversity in Modern Subsurface, Ocean, Surface Environments by Susan M. Barns and Sandra Nierzwicki-Bauer, p. 35 - 80 Chapter 3. Processes at Minerals and Surfaces with Relevance to Microorganisms and Prebiotic Synthesis by Jillian F. Banfield and Robert J. Hamers, p. 81 - 122 Chapter 4. Spatial Relationships between Bacteria and Mineral Surfaces by Brenda J. Little, Patrica A. Wagner, and Zbigniew Lewandowski, p. 123 - 160 Chapter 5. Surface-mediated Mineral Development by Bacteria by D. Fortin, F.G. Ferris, and T.J. Beveridge, p. 161 - 180 Chapter 6. Microbial Biomineralization of Magnetic Iron Minerals: Microbiology, Magnetism and Environmental Significance by Dennis A. Bazylinksi and Bruce M. Moskowitz, p. 181 - 224 Chapter 7. Bacterially-Mediated Mineral Formation: Insights into Manganese(II) Oxidation from Molecular Genetic and Biochemical Studies by Bradley M. Tebo, William C. Ghiorse, Lorraine G. van Waasbergen, Patricia L. Siering, and Ron Caspi, p. 225 - 266 Chapter 8. Algal Deposition of Carbonates and Silicates by Elisabeth W. de Vrind-de Jong and Johannes P. M. de Vrind, p. 267 - 308 Chapter 9. Reactions of Extracellular Organic Ligands with Dissolved Metal Ions and Mineral Surfaces by Alan T. Stone, p. 309 - 344 Chapter 10. The Bacterial View of the Periodic Table: Specific Functions for All Elements by Simon Silver, p. 345 - 360 Chapter 11. Geomicrobiology of Sulfide Mineral Oxidation by D. Kirk Nordstrom and Gordon Southam, p. 361 - 390 Chapter 12. Biogeochemical Weathering of Silicate Minerals by William W. Barker, Susan A. Welch, and Jillian F. Banfield, p. 391 - 428 Chapter 13. Long-term Evolution of the Biogeochemical Carbon Cycle by David J. Des Marais, p. 429 - 448
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  • 7
    Monograph available for loan
    Monograph available for loan
    Zürich : Verl. der Fachvereine
    Call number: 17/M 98.0102
    Type of Medium: Monograph available for loan
    Pages: XIII, 498 S.
    Edition: 4., durchges. Aufl.
    ISBN: 3728121657
    Classification:
    Geochemistry
    Language: German
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  • 8
    Call number: 21/STR 97/01
    In: Scientific technical report
    Type of Medium: GFZ publications
    Pages: 123 S.
    Series Statement: Scientific technical report / Geoforschungszentrum Potsdam 97,1
    Classification:
    Photogrammetry, Remote Sensing
    Language: German
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  • 9
    Monograph available for loan
    Monograph available for loan
    New York [u.a.] : Wiley & Sons
    Call number: M 10.0049 ; 10/M 98.0156
    Description / Table of Contents: Content: Partial table of contents: Hydrothermal Mineral Deposits: What We Do and Don Know (B. Skinner). Magmas and Hydrothermal Fluids (C. Burnham). Thermal Aspects of Ore Formation (L. Cathles). Oxygen and Hydrogen Isotope Relationships in Hydrothermal Mineral Deposits (H. Taylor). Hydrothermal Alteration and Its Relationship to Ore Fluid Composition (M. Reed). Sulfide Ore Mineral Stabilities, Morphologies, and Intergrowth Textures (D. Vaughan & J. Craig). Gangue Mineral Transport and Deposition (J. Rimstidt). Fluid Inclusion Studies of Hydrothermal Ore Deposits (E. Roedder & R. Bodnar). Geothermal Systems and Mercury Deposits (H. Barnes & T. Seward). Submarine Hydrothermal Systems and Deposits (S. Scott). Ore-Forming Brines in Active Continental Rifts (M. McKibben & L. Hardie). Appendix. Index.
    Type of Medium: Monograph available for loan
    Pages: xx, 972 S.
    Edition: 3rd ed.
    ISBN: 047157144X
    Classification:
    Geochemistry
    Language: English
    Location: Upper compact magazine
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  • 10
    Monograph available for loan
    Monograph available for loan
    Boston [u.a.] : Artech House
    Call number: 7/M 15.0291
    Description / Table of Contents: Synthetic Aperture Radar (SAR) is of major interest to radar professionals because it allows them to obtain high-resolution images with unsurpassed clarity from satellites that take pictures of the earth's surface in all weather conditions. This cutting-edge resource offers complete "how to" guidance on digital processing of synthetic aperture radar (SAR) data. Professionals discover precisely how this radar system works and gain an in-depth understanding of the properties of SAR data. The book explains how digital computers are used to form the focused image and provides practitioners with state-of-the-art processing algorithms that they can use for their projects. Written from a signal processing point of view, this authoritative volume can be fully understood by professionals and students with a general electrical engineering background.
    Type of Medium: Monograph available for loan
    Pages: xxviii, 625 S. : Ill., graph. Darst. + 1 CD-ROM
    ISBN: 9781580530583
    Classification:
    Photogrammetry, Remote Sensing
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  • 11
    Call number: NBM 01.0321
    Type of Medium: Non-book medium
    Pages: 1 CD-ROM
    Classification:
    Geochemistry
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  • 12
    Monograph available for loan
    Monograph available for loan
    Berlin [u.a.] : Springer
    Call number: 10/M 01.0013 ; AWI G6-97-0035
    Type of Medium: Monograph available for loan
    Pages: 201 S.
    Edition: 4th, completely rev., update, and enl. ed.
    ISBN: 3540611266
    Classification:
    Geochemistry
    Language: English
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  • 13
    Monograph available for loan
    Monograph available for loan
    Chichester : Wiley
    Associated volumes
    Call number: 17/M 99.0009
    In: Chemical analysis
    Type of Medium: Monograph available for loan
    Pages: IX, 514 S.
    ISBN: 0471974161
    ISSN: 415,00
    Series Statement: Chemical analysis 145
    Classification:
    Geochemistry
    Language: English
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  • 14
    Monograph available for loan
    Monograph available for loan
    Stuttgart : Enke
    Call number: M 99.0107 ; 17/M 98.0019 ; AWI G6-97-0197
    Description / Table of Contents: Inhalt: 1 Die Bildung und Umwandlung von organischem Material. - 1.1 Der globale Kohlenstoffzyklus. - 1.1.1 Organische Geochemie und der Kohlenstoffzyklus: eine Einleitung. - 1.1.2 Kohlenstoffspeicher und -transport. - Organismen und der Kohlenstoffzyklus. - Die Anreicherung von organischem Sedimentmaterial. - Abweichungen vom Gleichgewichtszustand. - Marine Primärproduktion und Sedimentation. - 1.1.3 Biochemische und geochemische Subzyklen. - Organisch-reiche Sedimente und Primärproduktion. - 1.2 Photosynthese und die Evolution des Lebens. - 1.2.1 Atmosphärischer Sauerstoff, Photosynthese und die ersten Organismen. - 1.2.2 Evolution des marinen Lebens. - 1.2.3 Evolution des terrestrischen Lebens. - 1.2.4 Regionale Veränderungen von Ökosystemen. - 1.3 Quellen des sedimentären organischen Materials. - 1.3.1 Die wichtigsten heutigen Quellen. - 1.3.2 Fossile Aufzeichnungen der Quellen des organischen Materials. - 1.4 Photosynthese und stabile Kohlenstoffisotope. - 2 Die chemische Zusammensetzung biogener Stoffe. - 2.1 Die Struktur natürlich vorkommender Stoffe. - 2.1.1 Einleitung. - 2.1.2 Bindungen in organischen Verbindungen. - 2.1.3 Stereoisomerie. - 2.2 Kohlenhydrate. - 2.2.1 Zusammensetzung. - 2.2.2 Vorkommen und Funktion. - 2.3 Proteine. - 2.3.1 Zusammensetzung. - 2.3.2 Vorkommen und Funktion. - 2.4 Lipide. - 2.4.1 Glyceride. - Fette. - Phospholipide, Glycolipide und Etherlipide. - 2.4.2 Wachse und verwandte Verbindungen. - Wachse. - Kutin und Suberin. - 2.4.3 Terpene. - Monoterpene. - Sesquiterpene. - Diterpene. - Triterpene. - Steroide. - Tetraterpene. - 2.4.4 Tetrapyrrole Farbstoffe. - 2.5 Lignin, Tannin und verwandte Verbindungen. - 2.5.1 Lignin. - 2.5.2 Tannine und andere hydroxyaromatische Pigmente. - 2.6 Geochemische Auswirkungen der Veränderungen der Zusammensetzung. - 2.6.1 Veränderungen der Zusammensetzung von Organismen. - 2.6.2 Veränderungen durch die geologische Zeit. - 3 Bedingungen für die Bildung organisch-reicher Sedimente. - 3.1 Einleitung. - 3.2 Kontrollierende Faktoren der Primärproduktion. - 3.2.1 Die Schichtung der Wassersäule. - 3.2.2 Licht. - 3.2.3 Nährstoffe. - Ozeane in niedrigen Breitengraden. - Ozeane in mittleren Breitengraden. - Ozeane in höheren Breitengraden. - Geschichtete Seen. - 3.2.4 Räumliche Veränderungen der marinen Primärproduktion. - 3.2.5 Veränderungen der Phytoplanktonpopulationen. - 3.3 Die Erhaltung und der Abbau organischen Materials. - 3.3.1 Die Entwicklung der Primärproduktion in der Wassersäule. - 3.3.2 Der Werdegang des organischen Materials in den Sedimenten. - Der aerobe Abbau. - Der anaerobe Abbau. - Bakterielle Gemeinschaften und ihre Wechselwirkungen. - 3.3.3. Kontrollierende Faktoren bei der Erhaltung des organischen Sedimentmaterials. - 3.4 Ablagerungsbereiche. - 3.4.1 Lakustrine Bereiche. - Offene Seen. - Geschlossene Seen. - 3.4.2 Torfsümpfe und Kohlenbildung. - Okefenokee-Sumpf. - 3.4.3 Marine Bereiche. - Marine Schelfablagerungen. - Eingeschlossene und durch Schwellen abgetrennte Becken. - Bildung und Erhaltung organischen Materials im Schwarzen Meer. - Reduzierende Ereignisse der Kreide. - 4 Die Bildung von Huminstoffen, Kohle und Kerogen. - 4.1 Diagenese. - 4.1.1 Einleitung. - 4.1.2 Der mikrobielle Abbau des organischen Materials während der Diagenese. - 4.1.3 Die Bildung von Geopolymeren. - 4.2 Huminstoffe. - 4.2.1 Vorkommen und Klassifizierung. - 4.2.2 Komposition und Struktur. - 4.2.3 Die Bildung der Huminstoffe. - 4.3 Kohlen. - 4.3.1 Klassifizierung und Zusammensetzung. - Klassifizierung. - Petrologische Zusammensetzung. - Chemische Zusammensetzung. - 4.3.2 Die Bildung. - Torfbildung. - Die biochemische Stufe der Inkohlung. - Die geochemische Stufe der Inkohlung. - Strukturelle Veränderungen während der Bildung der Kohlen. - 4.4 Kerogen. - 4.4.1 Bildung. - Geopolymerbildung während der Diagenese. - Biomarker. - Schwefeleinbindung. - 4.4.2 Zusammensetzung des Kerogens. - 4.4.3 Klassifizierung des Kerogens. - Typ I-Kerogen. - Typ II-Kerogen. - Typ III-Kerogen. - Typ IV-Kerogen. - Verbesserte Kerogentypisierung. - 4.4.4 Die thermische Evolution des Kerogens. - Strukturelle Veränderungen. - Veränderungen der chemischen Zusammensetzung. - 5 Die Bildung und Zusammensetzung von Petroleum. - 5.1 Petroleumbildung. - 5.1.1 Einleitung. - 5.1.2 Kohlenwasserstoffbildung aus Kohlen. - 5.1.3 Kohlenwasserstoffzusammensetzung als Funktion der Kerogenreife. - 5.1.4 Reaktionen bei der Kohlenwasserstoffbildung. - Isotopenfraktionierung. - 5.2 Die Bedeutung von Zeit und Temperatur bei der Petroleumbildung. - 5.2.1 Der Einfluß von Zeit und Temperatur auf die Kohlenwasserstoffgeneration. - Temperatur. - Zeit. - 5.2.2 Kinetische Modelle der Petroleumbildung. - Zeit-Temperatur-Index. - Komplexe Modelle. - 5.3 Die Migration von Kohlenwasserstoffen. - 5.3.1 Primäre Migration. - Mechanismen der primären Migration. - Expulsionseffizienz. - 5.3.2 Sekundäre Migration. - 5.3.3 Fallen und Speicher. - 5.4 Die Zusammensetzung des Petroleums. - 5.4.1 Die Gesamtzusammensetzung von Erdölen. - 5.4.2 Kohlenwasserstoffe im Petroleum. - Die wichtigsten Kohlenwasserstoffe. - Biomarker. - 5.4.3 Vergleich der Rohölzusammensetzung mit dem Bitumen der Muttergesteine. - Migration. - Auswaschung. - Deasphaltierung. - Biodegradation. - Thermische Veränderungen. - 5.5 Die Vorkommen fossiler Brennstoffe. - 5.5.1 Die zeitliche Verteilung der fossilen Brennstoffe. - 5.5.2 Ölreserven. - Konventionelle Öle. - Schweröle. - Ölschiefer. - 5.5.3 Kohle. - 5.5.4 Gas. - 5.6 Die Bewertung von Erdöl- und Erdgasmuttergesteinen. - 5.6.1 Menge und Art des organischen Materials. - Menge des organischen Materials. - Typ des organischen Materials - optische Methoden. - Typ des organischen Materials - physikalisch-chemische Methoden. - 5.6.2 Reife des organischen Materials. - Optische Bestimmungen der Reife. - Pyrolytische Messungen der Reife. - Einfluß der Reife auf die Identifizierung des organischen Materials. - Chemische Bestimmungen der Reife anhand des Bitumens. - 5.6.3 Korrelationen zwischen Isotopenverteilung und Petroleummuttergestein. - 6 Die molekulare Bewertung rezenter Sedimente. - 6.1 Von Organismen vererbte Biomarkerverteilungen. - 6.1.1 Einleitung. - 6.1.2 Generelle Unterschiede zwischen den Hauptorganismengruppen. - 6.1.3 Faktoren, die die Lipidzusammensetzung der Organismen beeinflussen. - 6.2 Beispiele für Quellenindikatoren in rezenten Sedimenten. - 6.2.1 Fettsäuren. - Monoungesättigte Fettsäuren. - Polyungesättigte Fettsäuren. - 2- und 3-methylverzweigte Fettsäuren. - Intern-verzweigte und Cycloalkylfettsäuren. - Hydroxyfettsäuren. - 6.2.2 Sterole. - 6.2.3 Kohlenhydrate. - 6.2.4 Lignin. - 6.2.5 Kohlenstoffisotope. - 6.3 Die Diagenese auf molekularer Ebene. - 6.3.1 Allgemeine diagenetische Prozesse. - Kohlenhydrate und Lignine. - Biomarker. - 6.3.2 Die Lipiddiagenese in der Wassersäule. - 6.3.3 Die sedimentäre Diagenese der Lipide. - Fettsäuren. - Photosynthetisch aktive Farbstoffe. - Steroide. - Terpene. - 6.4 Paleotemperaturmessungen. - 6.4.1 Die Epimerisierung von Aminosäuren. - 6.4.2 Der Sättigungsgrad in langkettigen Ketonen. - 7 Molekulare Untersuchungen an Sedimenten und die Petroleumbildung. - 7.1 Quellenindikatoren. - 7.1.1 Einleitung. - 7.1.2 Kohlenwasserstoffe. - Normale und methyl-verzweigte Alkane. - Acyclische Isoprene. - Cycloalkane. - 7.1.3 Kohlenstoffisotope. - 7.2 Hinweise auf den Ablagerungsbereich. - 7.2.1 Hypersalinität. - 7.2.2 Redoxbedingungen. - Phytoldiagenese. - Nickel- und Vanadiumverteilungen. - 7.2.3 Die Erkennung unterschiedlicher mariner und lakustriner Bereiche. - 7.3 Thermische Reife und molekulare Umwandlungen. - 7.3.1 Strukturisomerie. - Acyclische Isoprenalkane. - Sterane. - Triterpane. - 7.3.2 Aromatisierung. - 7.3.3 Anreicherung von kurzkettigen Kohlenwasserstoffen und Crackprozesse. - Steroide. - Porphyrine. - 7.4 Molekulare Reife und Quellenparameter in der Erdölexploration. - 7.4.1 Molekulare Reifeparameter. - Leichte Kohlenwasserstoffe. - Kohlenstoffpräferenz-Index (Carbon Preference Index). - Pristanformations-Index. - Biomarker-Umwandlungen. - Methylgruppenisomerisierung in aromatischen Kohlenwasserstoffen. - 7.4.2 Der Einfluß von geothermischen Gradienten auf molekulare Reifeparameter. - 7.4.3 Öl/Muttergesteins-Korrelationen. - 7.5 Die Analyse der Biomarker-Kohlenwasserstoffe. - 7.5.1 Einleitung. - 7.5.2 Gaschromatographie-Massenspektrometrie. - 7.5.3 Die Bewertung der Biomarkerverteilungen. - 8 Das Verhalten anthropogener organischer Verbindungenin der Umwelt. - 8.1 Einleitung. - 8.2 Der Einfluß des Menschen auf den Kohlenstoffzyklus. - 8.2.1 Kohlendioxid und der Treibhauseffekt. - 8.2.2 Der Einfluß von Spurengasen auf die globale Erwärmung. - Methan. -Kohlenmonoxid. - Dimethylsulfide. - 8.2.3 Eutrophierung. - 8.3 Halogenkohlenwasserstoffe und Abbau des Ozons. - 8.4 Verschmutzungen durch Kohlenwasserstoffe im aquatischen Bereich. - 8.4.1 Die Verbrennung fossiler Brennstoffe. - Polycyclische aromatische Kohlenwasserstoffe in rezenten Sedimenten. - Polycyclische aromatische Kohlenwasserstoffe in vorzeitlichen Sedimenten. - 8.4.2 Ölverschmutzungen. - Die Effekte der Ölverschmutzung. - Die Überwachung von Ölverschmutzungen. - 8.5 Einige xenobiotische organische Substanzen. - 8.5.1 DDT und verwandte Verbindungen. - 8.5.2 Polychlorierte Biphenyle. - 8.6 Faktoren, die den Werdegang anthropogener Einträge beeinflussen. - 8.6.1 Allgemeine Betrachtungen. - 8.6.2 Huminstoffe und Schadstoffe. - Literatur. - Weiterführende Literatur. - Sachregister
    Type of Medium: Monograph available for loan
    Pages: xiv, 230 S.
    ISBN: 3432276419
    Uniform Title: An introduction to organic geochemistry
    Classification:
    Geochemistry
    Language: German
    Location: Upper compact magazine
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  • 15
    Monograph available for loan
    Monograph available for loan
    Malden, Mass. [u.a.] : Blackwell
    Call number: 10/M 06.0214 ; 10/M 04.0560 ; 10/M 13.0094
    Description / Table of Contents: Contents: Carbon, the Earth and life. Chemical composition of biogenic matter. Production, preservation and degradation of organic matter. Long-term fate of organic matter in the geosphere. Chemical stratigraphy. The carbon cycle and climate. Anthropogenic carbon and the environment.
    Type of Medium: Monograph available for loan
    Pages: vi, 393 S., graph. Darst.
    Edition: 2nd ed.
    ISBN: 0632065044
    Classification:
    Geochemistry
    Location: Reading room
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  • 16
    Monograph available for loan
    Monograph available for loan
    Boca Raton [u.a.] : Lewis Publishers
    Call number: 10/N 04.0218 ; AWI G4-97-0488
    Type of Medium: Monograph available for loan
    Pages: 328 Seiten , Illustrationen
    ISBN: 1566702496
    Classification:
    Geochemistry
    Language: English
    Note: Table of Contents: CHAPTER 1: THE ENVIRONMENTAL ISOTOPES: Environmental Isotopes in Hydrogeology. - Stable Isotopes: Standards and Measurement. - Isotope Ratio Mass Spectrometry. - Radioisotopes. - Isotope Fractionation. - Isotope Fractionation (a), Enrichment (e), and Separation (D). - CHAPTER 2: TRACING THE HYDROLOGIGICAL CYCLE: Craig's Meteoric Relationship in Global Fresh Waters. - Partitioning of Isotopes Through the Hydrological Cycle. - Condensation, Precipitation, and the Meteoric Water Line. - A Closer Look at Rayleigh Distillation. - Effects of Extreme Evaporation. - CHAPTER 3: PRECIPITATION: The T - d18O Correlation in Precipitation. - Local Effects on T - d18O. - Ice Cores and Paleotemperature. - CHAPTER 4: GROUNDWATER: Recharge in Temperate Climates. - Recharge in Arid Regions. - Recharge from River-Connected Aquifers. - Hydrograph Separation in Catchment Studies. - Groundwater Mixing. - CHAPTER 5: TRACING THE CARBON CYCLE: Evolution of Carbon in Groundwaters. - Carbonate Geochemistry. - Carbon-13 in the Carbonate System. - Dissolved Organic Carbon. - Methane in Groundwaters. - Isotopic Composition of Carbonates. - CHAPTER 6: GROUNDWATER QUALITY: Sulphate, Sulphide and the Sulphur Cycle. - Nitrogen Cycles in Rural Watersheds. - The "Fuhrberger Feld" Study. - Source of Chloride Salinity. - Landfill Leachates. - Degredation of Chloro-organics and Hydrocarbon. - Sensitivity of Groundwater to Contamination. - Summary of Isotopes in Contaminant Hydrology. - CHAPTER 7: IDENTIYING AND DATING MODERN GROUNDWATERS: The "Age" of Groundwater. - Stable Isotopes. - Tritium in Precipitation. - Dating Groundwaters with Tritium. - Groundwater Dating with 3H -3He. - Chlorofluorocarbons (CFCs). - Thermonuclear 36Cl. - Detecting Modern Groundwaters with 85Kr . - Submodern Groundwater. - CHAPTER 8: AGE DATING OLD GROUNDWATERS: Stable Isotopes and Paleogroundwaters. - Groundwater Dating with Radiocarbon. - Correction for Carbonate Dissolution. - Some Additional Complications to 14C Dating. - 14C Dating with Dissolved Organic Carbon (DOC). - Case Studies for 14C dating with DOC and DIC. - Chlorine-36 and Very Old Groundwater. - The Uranium Decay Series. - CHAPTER 9: WATER-ROCK INTERACTION: Mechanisms of Isotope Exchange. - High Temperature Systems. - Low Temperature Water-Rock Interaction. - Strontium Isotopes in Water and Rock. - Isotope Exchange in Gas-Water Reactions. - High pH Groundwaters-The Effect of Cement Reactions. - CHAPTER 10: FIELD METHODS FOR SAMPLING: Groundwater. - Water in the Unsaturated Zone. - Precipitation. - Gases. - Geochemistry. - References. - Subject Index. - Each chapter has Problems sections.
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  • 17
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    Monograph available for loan
    Cambridge [u.a.] : Cambridge Univ. Press
    Associated volumes
    Call number: 7/M 05.0091
    In: Topics in remote sensing
    Description / Table of Contents: Electromagnetic wave propagation. The absorption of light. Specular reflection. Scattering by a single particle. Propagation in a non-uniform medium: the equation of radiative transfer. The bidirectional reflectance of a semi-infinite medium. The bidirectional reflectance in other geometries. Other quantities related to reflectance, integrated reflectances, planetary photometry, reflectances of mixtures. Reflectance spectroscopy. Photometric effects of large scale roughness. Thermal emission. Polarization.
    Type of Medium: Monograph available for loan
    Pages: xiii, 455 S. , graph. Darst.
    ISBN: 0521619270
    Series Statement: Topics in remote sensing 3
    Classification:
    Photogrammetry, Remote Sensing
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  • 18
    Monograph available for loan
    Monograph available for loan
    Sudbury, Mass. [u.a.] : Jones and Bartlett Publishers
    Call number: 10/M 05.0398
    Description / Table of Contents: Contents: The Earth's Aggregate Physical and Chemical State. Introduction to Thermodynamics. Mixture and Simple Phase Relations. Mineral Chemistry. Aqueous Solutions. Chemistry of Natural Waters. Chemistry of Igneous Rocks. Chemical Controls on Soil Formation, Diagenesis, Metamorphism, and Hydrothermal Ore Deposition . Radioactive Isotope Geochemistry. Stable Isotope Geochemistry. Surface Sorption Geochemistry. Chemical Kinetics. Oxidation and Reduction. Organic Geochemistry. Atmospheric Chemistry
    Type of Medium: Monograph available for loan
    Pages: xiv, 704 S. : Ill.
    ISBN: 0763726427
    Classification:
    Geochemistry
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  • 19
    Monograph available for loan
    Monograph available for loan
    New York; NY : Springer [u.a.]
    Associated volumes
    Call number: 7/M 06.0247
    In: Remote sensing and digital image processing
    Description / Table of Contents: 1. Physical properties of soil --2. Dielectric behavior of soil - 3. Measurement of soil water content - 4. Microwave remote sensing techniques in soil moisture estimation - 5. Dielectric constant of soil - 6. Soil moisture models - 7. Synthetic aperture radiometer - 8. Conclusion and future challenges in remote sensing.
    Type of Medium: Monograph available for loan
    Pages: xii, 164 S.
    ISBN: 1402032714
    Series Statement: Remote sensing and digital image processing 8
    Classification:
    Photogrammetry, Remote Sensing
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  • 20
    Call number: 21/STR 05/02
    In: Scientific Technical Report STR
    Type of Medium: GFZ publications
    Pages: VIII, 99, LXXVI S. , Ill., graph. Darst.
    Series Statement: Scientific Technical Report STR 05/02
    Classification:
    Geochemistry
    Note: Potsdam, Univ., Diss., 2003
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  • 21
    Call number: 21/STR 96/06
    In: Scientific technical report
    Type of Medium: GFZ publications
    Pages: xii, 142 S.
    Series Statement: Scientific Technical Report / Geoforschungszentrum Potsdam 96,6
    Classification:
    Geochemistry
    Language: English
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  • 22
    Call number: 21/STR 96/04
    In: Scientific technical report
    Type of Medium: GFZ publications
    Series Statement: Scientific technical report / Geoforschungszentrum Potsdam 96/04
    Classification:
    Geochemistry
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  • 23
    Call number: 11/M 05.0569
    Description / Table of Contents: Contents: The Focused Ion Beam Instrument. Ion,Solid Interactions. Focused Ion Beam Gases for Deposition and Enhanced Etch. Three-Dimensional Nanofabrication Using Focused Ion Beams. Device Edits and Modifications. The Uses of Dual Beam FIB in Microelectronic Failure Analysis. High Resolution Live Imaging of FIB Milling Processes for Optimum Accuracy. FIB for Materials Science Applications. Practical Aspects of FIB TEM Specimen Preparation. FIB LiftOut Specimen Preparation Techniques. A FIB MicroSampling Technique and a Site Specific TEM Specimen Preparation Method. DualBeam (FIBSEM) Systems. Focused Ion Beam Secondary Ion Mass Spectrometry (FIBSIMS). Quantitative Three Dimensional Analysis Using Focused Ion Beam Microscopy. Applications of FIB in Combination with Auger Electron Spectroscopy.
    Type of Medium: Monograph available for loan
    Pages: xiv, 357 S. , Ill., graph. Darst.
    ISBN: 0387231161
    Classification:
    Geochemistry
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  • 24
    Call number: 11/M 05.0616
    In: Reviews in mineralogy & geochemistry
    Description / Table of Contents: As geomicrobiologists, we seek to understand how some of nature's most complex systems work, yet the very complexity we seek to understand has placed many of the insights out of reach. Recent advances in cultivation methodologies, the development of ultrahigh throughput DNA sequencing capabilities, and new methods to assay gene expression and protein function open the way for rapid progress. In the eight years since the first Geomicrobiology volume (Geomicrobiology: Interactions between microbes and minerals; volume 35 in this series) we have transformed into scientists working hand in hand with biochemists, molecular biologists, genome scientists, analytical chemists, and even physicists to reveal the most fundamental molecular-scale underpinnings of biogeochemical systems. Through synthesis achieved by integration of diverse perspectives, skills, and interests, we have begun to learn how organisms mediate chemical transformations, the ways in which the environment determines the architecture of microbial communities, and the interplay between evolution and selection that shapes the biodiversity of the planet. This volume presents chapters written by leaders in the rapidly maturing field we refer to as molecular geomicrobiology. Most of them are relatively young researchers who share their approaches and insights and provide pointers to exciting areas ripe for new advances. This volume ties together themes common to environmental microbiology, earth science, and astrobiology. The resesarch presented here, the associated short course, and the volume production were supported by funding from many sources, notably the Mineralogical Society of America, the Geochemical Society, the US Department of Energy Chemical Sciences Program and the NASA Astrobiology Institute.
    Type of Medium: Monograph available for loan
    Pages: XIV, 294 S.
    ISBN: 0-939950-71-5 , 978-0-939950-71-3
    ISSN: 1529-6466
    Series Statement: Reviews in mineralogy & geochemistry 59
    Classification:
    Geochemistry
    Note: Chapter 1. The search for a molecular-level understanding of the processes that underpin the Earth's biogeochemical cycles by Jillian F. Banfield, Gene W. Tyson, Eric E. Allen, and Rachel J. Whitaker, p. 1 - 8 Chapter 2. What genetics offers geobiology by Dianne K. Newman and Jeffrey A. Gralnick, p. 9 - 26 Chapter 3. Enzymology of electron transport: energy generation with geochemical consequences by Thomas J. DiChristina, Jim K. Fredrickson, and John M. Zachara, p. 27 - 52 Chapter 4. Siderophores and the dissolution of iron-bearing minerals in marine systems by Stephan M. Kraemer, Alison Butler, Paul Borer, and Javiera Cervini-Silva, p. 53 - 84 Chapter 5. Geomicrobiological cycling of iron by Andreas Kappler and Kristina L. Straub, p. 85 - 108 Chapter 6. Molecular-scale processes involving nanoparticulate minerals in biogeochemical systems by Benjamin Gilbert, Jillian F. Banfield, p. 109 - 156 Chapter 7. The organic-mineral interface in biominerals by Pupa Gilbert, Mike Abrecht, and Bradley H. Frazer, p. 157 - 186 Chapter 8. Catalysis and prebiotic synthesis by James P. Ferris, p. 187 - 210 Chapter 9. The evolution of biological carbon and nitrogen cycling-a genomic perspective by Jason Raymond, p. 211 - 232 Chapter 10. Building the biomarker tree of life by Jchen J. Brocks and Ann Pearson, p. 233 - 258 Chapter 11. Population dynamics through the lens of extreme environments by Rachel J. Whitaker and Jillian F. Banfield, p. 259 - 278 Chapter 12. Metabolism and genomics: adventures derived from complete genome sequencing by Kenneth H. Nealson and Barbara Methe, p. 279 - 294
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  • 25
    Call number: S 94.0254(74) / Regal 35
    In: Reports on geodesy
    Type of Medium: Series available for loan
    Pages: 304 S.
    ISBN: 8385287736
    Series Statement: Reports on geodesy 74 = 2005, 3
    Classification:
    Photogrammetry, Remote Sensing
    Location: Magazine - must be ordered
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  • 26
    Monograph available for loan
    Monograph available for loan
    Washington : American Geophysical Union
    Associated volumes
    Call number: 5/M 96.0563
    In: Geophysical monograph
    Type of Medium: Monograph available for loan
    Pages: xviii, 437 S.
    ISBN: 0875900771
    Series Statement: Geophysical monograph 95
    Classification:
    Geochemistry
    Language: English
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