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  • 2015-2019  (78,317)
  • 1980-1984
  • 1965-1969
  • 1935-1939
  • 2017  (78,317)
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  • 2015-2019  (78,317)
  • 1980-1984
  • 1965-1969
  • 1935-1939
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  • 1
    Call number: 9/M 07.0421(452)
    In: Geological Society special publication
    Description / Table of Contents: The development of the geological and medical sciences shows overlap through numerous historical threads, some of which are investigated here by an international authorship of geologists, historians and medical professionals. Some of the medical men considered here are the relatively well known Steno, Parkinson, William Hunter and Peter Duncan, as well as several more obscure individuals such as Sperling, Hodges, Lemoine, Siqués and a number of Italians. Their work included foundational geological studies, aspects of hydrogeology and the nature of fossils. The therapeutic use of geological materials has been practised since ancient times. A suite of magico-medicinal stones, some purportedly harvested from the bodies of fabulous animals, have ancient folklore roots and were worn as protective amulets and incorporated into medicines. Medicinal earths were credited with wide-ranging medicinal properties. Geology and Medicine: Historical Connections will be of particular interest to Earth scientists, medical personnel, historians of science and the general reader with an interest in science
    Type of Medium: Monograph available for loan
    Pages: 298 Seiten , Illustrationen, Diagramme, Karten , 26 cm
    ISBN: 1786202832 , 9781786202833
    Series Statement: Geological Society special publication 452
    Language: English
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  • 2
    Keywords: Geologie ; Geomedizin ; Geschichte ; Gesundheitswesen ; Heilkunde ; Lithotherapie ; Medizin ; Naturheilkunde ; Therapie ; Umweltfaktor ; Umweltmedizin ; Balneology ; Earths, Medical and surgical uses of ; Environmentally induced diseases ; History ; Hydrotherapy ; Materia medica ; Medical geology ; Medicine ; Rocks ; Therapeutic use
    Description / Table of Contents: Article --- Men, methods and materials: exploring the historical connections between geology and medicine / Christopher J. Duffin / Geological Society, London, Special Publications, 452, 1-8, 26 April 2017, https://doi.org/10.1144/SP452.19 --- Men and methods --- Earth science as a philosophical background to medicine: an essay based on the autobiography of Dr Otto Sperling (1602–81) / Ella Hoch / Geological Society, London, Special Publications, 452, 9-33, 10 April 2017, https://doi.org/10.1144/SP452.18 --- Nathaniel Hodges and the purging wells of Shooter's Hill / John D. Mather and Christopher J. Duffin / Geological Society, London, Special Publications, 452, 35-45, 19 December 2016, https://doi.org/10.1144/SP452.4 --- Water and the city of Milan at the end of the nineteenth century / Alessandro Porro, Antonia Francesca Franchini, Bruno Falconi, Paolo Maria Galimberti and Lorenzo Lorusso / Geological Society, London, Special Publications, 452, 47-54, 22 December 2016, https://doi.org/10.1144/SP452.9 --- Italian physicians’ contribution to geosciences / Marco Pantaloni, Fabiana Console, Lorenzo Lorusso, Fabio Massimo Petti, Antonia Francesca Franchini, Alessandro Porro and Marco Romano / Geological Society, London, Special Publications, 452, 55-75, 22 March 2017, https://doi.org/10.1144/SP452.17 --- The obstetrician, the surgeon and the premature birth of the world's first dinosaur: William Hunter and James Parkinson / J. J. Liston and L. Alcalá / Geological Society, London, Special Publications, 452, 77-101, 18 January 2017, https://doi.org/10.1144/SP452.7 --- Pau Estorch Siqués (1805–71) and his ‘magnes venenorum’ / F. Sabaté Casellas and B. Torres Gallardo / Geological Society, London, Special Publications, 452, 103-106, 2 February 2017, https://doi.org/10.1144/SP452.12 --- Duncan and Son: changing professional boundaries in the geological and medical sciences in the nineteenth and twentieth centuries / Tim Carter and Anne Spurgeon / Geological Society, London, Special Publications, 452, 107-113, 19 December 2016, https://doi.org/10.1144/SP452.8 --- From giant birds to X-rays: Victor Lemoine (1837–97), physician and palaeontologist / Eric Buffetaut / Geological Society, London, Special Publications, 452, 115-131, 19 December 2016, https://doi.org/10.1144/SP452.3 --- Materials --- Geotherapeutics: the medicinal use of earths, minerals and metals from antiquity to the twenty-first century / Spyros Retsas / Geological Society, London, Special Publications, 452, 133-139, 20 December 2016, https://doi.org/10.1144/SP452.5 --- Archaeological medicinal earths as antibacterial agents: the case of the Basel Lemnian sphragides / E. Photos-Jones, C. Edwards, F. Häner, L. Lawton, C. Keane, A. Leanord and V. Perdikatsis / Geological Society, London, Special Publications, 452, 141-153, 2 February 2017, https://doi.org/10.1144/SP452.6 --- Alectorius: a parasympathomimetic stone? / Joaquin Carrasco and Christopher J. Duffin / Geological Society, London, Special Publications, 452, 155-162, 21 February 2017, https://doi.org/10.1144/SP452.15 --- ‘Serpent stones’: myth and medical application / Rachael Pymm / Geological Society, London, Special Publications, 452, 163-180, 19 December 2016, https://doi.org/10.1144/SP452.1 --- ‘A charm to impose on the vulgar’: the medicinal and magical applications of the snakestone bead within the British Isles / Rachael Pymm / Geological Society, London, Special Publications, 452, 181-194, 2 February 2017, https://doi.org/10.1144/SP452.13 --- The name is the message: eagle-stones and materia medica in South America / Irina Podgorny / Geological Society, London, Special Publications, 452, 195-210, 27 February 2017, https://doi.org/10.1144/SP452.14 --- ‘Fish’, fossil and fake: medicinal unicorn horn / Christopher J. Duffin / Geological Society, London, Special Publications, 452, 211-259, 1 March 2017, https://doi.org/10.1144/SP452.16 --- ‘Not used to be worn as a Jewel’: The wearing of precious stones in early modern England – ornaments or medicine? / Tom Blaen / Geological Society, London, Special Publications, 452, 261-265, 22 December 2016, https://doi.org/10.1144/SP452.10 --- Coral in Petrus Hispanus’ ‘Treasury of the Poor’ / Maria Do Sameiro Barroso / Geological Society, London, Special Publications, 452, 267-282, 22 December 2016, https://doi.org/10.1144/SP452.11 --- Lead, isotopes and ice: a deadly legacy revealed / Beverly P. Bergman / Geological Society, London, Special Publications, 452, 283-291, 19 December 2016, https://doi.org/10.1144/SP452.2
    Pages: Online-Ressource (298 Seiten) , Illustrationen, Diagramme, Karten
    ISBN: 9781786202833
    Language: English
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  • 3
    Keywords: Arctic Ocean ; Alaska ; ecology
    Description / Table of Contents: Chapter 1: Introduction 2 --- 1.1 Introduction 2 --- 1.2 A Closer Look: Kawerak’s Contribution of Traditional Knowledge 7 --- Map 1.1 Regional Overview 12 --- Chapter 2: Physical Setting 14 --- 2.1 Ocean Currents 16 --- Map 2.1 Ocean Currents 20 --- 2.2 Sea Ice 22 --- Map 2.2a Sea Ice Advance 26 --- Map 2.2b Sea Ice Retreat 28 --- 2.3 Climate 30 --- Maps 2.3a–p Climate 36 --- 2.4 A Closer Look: Bering Sea Weather 38 --- Chapter 3: Biological Setting 42 --- 3.1 Primary Productivity 44 --- Map 3.1 Primary Productivity 46 --- 3.2 Zooplankton 48 --- Map 3.2 Zooplankton 50 --- 3.3 Benthic Biomass 52 --- Map 3.3 Benthic Biomass 56 --- 3.4 Snow and Tanner Crabs 58 --- Map 3.4 Snow Crab 62 --- 3.5 Red King Crab 64 --- Map 3.5 Red King Crab 67 --- Chapter 4: Fishes 72 --- 4.1 Forage Fish Assemblages 74 --- Map 4.1.1 Osmerids 78 --- Map 4.1.2 Pacific Herring 80 --- 4.2 Walleye Pollock 82 --- Map 4.2 Walleye Pollock 84 --- 4.3 North Pacific Cods 85 --- Map 4.3 North Pacific Cods 88 --- 4.4 Atka Mackerel 90 --- Map 4.4 Atka Mackerel 92 --- 4.5 Yellowfin Sole 94 --- Map 4.5 Yellowfin Sole 96 --- 4.6 Pacific Halibut 98 --- Map 4.6 Pacific Halibut 100 --- 4.7 Pacific Salmon 101 --- Map 4.7 Pacific Salmon 104 --- Chapter 5: Birds 110 --- 5.1 Marine Bird Colonies 112 --- Map 5.1.1 Marine Bird Colonies 116 --- Maps 5.1.2a–d Foraging Guilds 118 --- 5.2 Important Bird Areas 120 --- Map 5.2 Important Bird Areas 122 --- 5.3 A Closer Look: Bird Density and Survey Effort 124 --- Map 5.3.1 Annual Bird Density 124 --- Map 5.3.2 Bird Survey Effort 124 --- Maps 5.3.3a–d Seasonal Bird Density 125 --- Marine Waterbirds --- 5.4 Eiders 126 --- Map 5.4.1 King Eider 132 --- Map 5.4.2 Spectacled Eider 134 --- Map 5.4.3 Steller’s Eider 136 --- Map 5.4.4 Common Eider 138 --- 5.5 Long-tailed Duck 140 --- Map 5.5 Long-tailed Duck 144 --- 5.6 Loons 146 --- Map 5.6.1 Yellow-billed Loon 150 --- Map 5.6.2 Red-throated Loon 152 --- 5.7 Red-faced Cormorant 154 --- Map 5.7 Red-faced Cormorant 156 --- 5.8 Phalaropes 157 --- Map 5.8.1 Red-necked Phalarope 160 --- Map 5.8.2 Red Phalarope 160 --- 5.9 Aleutian Tern 161 --- Map 5.9 Aleutian Tern 163 --- 5.10 Kittiwakes 164 --- Map 5.10.1 Red-legged Kittwake 167 --- Map 5.10.2 Black-legged Kittwake 167 --- 5.11 Ivory Gull 168 --- Map 5.11 Ivory Gull 170 --- Seabirds --- 5.12 Murres 171 --- Map 5.12.1 Common Murre 174 --- Map 5.12.2 Thick-billed Murre 174 --- Map 5.12.3 Total Murres 175 --- 5.13 Puffins 176 --- Map 5.13.1 Horned Puffin 179 --- Map 5.13.2 Tufted Puffin 179 --- 5.14 Auklets 180 --- Map 5.14.1 Parakeet Auklet 186 --- Map 5.14.2 Crested Auklet 186 --- Map 5.14.3 Whiskered Auklet 187 --- Map 5.14.4 Least Auklet 187 --- 5.15 Short-tailed Albatross 188 --- Map 5.15 Short-tailed Albatross 190 --- 5.16 Shearwaters 191 --- Map 5.16 Short-tailed / Sooty Shearwater 194 --- Chapter 6: Mammals 204 --- 6.1 Polar Bear 206 --- Maps 6.1a–d Polar Bear Seasonal Distribution 212 --- Pinnipeds --- 6.2 Pacific Walrus 214 --- Map 6.2a Pacific Walrus Summer / Fall 220 --- Map 6.2b Pacific Walrus Winter / Spring 222 --- 6.3 Ice Seals 224 --- Map 6.3.1 Bearded Seal 230 --- Map 6.3.2 Ribbon Seal 230 --- Map 6.3.3 Ringed Seal 231 --- Map 6.3.4 Spotted Seal 231 --- 6.4 Steller Sea Lion 232 --- Map 6.4 Steller Sea Lion 234 --- 6.5 Northern Fur Seal 236 --- Map 6.5 Northern Fur Seal 238 --- Cetaceans --- 6.6 Beluga Whale 240 --- Map 6.6.1 Beluga Whale Stocks 243 --- Map 6.6.2 Beluga Whale 244 --- 6.7 Bowhead Whale 246 --- Maps 6.7a–d Bowhead Whale Seasonal Distribution 250 --- 6.8 Gray Whale 252 --- Map 6.8 Gray Whale 254 --- 6.9 Humpback Whale 255 --- Map 6.9 Humpback Whale 257 --- Chapter 7: Human Uses 266 --- 7.1 A Closer Look: Historical Perspective 268 --- 7.2 Transportation and Energy Infrastructure 270 --- Map 7.2 Transportation and Energy Infrastructure 274 --- 7.3 Petroleum Exploration and Development 276 --- Map 7.3 Petroleum Exploration and Development 282 --- 7.4 A Closer Look: Artificial Islands 284 --- 7.5 Vessel Traffic 285 --- Map 7.5.1 Vessel Density 288 --- Map 7.5.2 Vessel Traffic Patterns 290 --- Maps 7.5.3a–m Vessel Traffic by Month 292 --- 7.6 A Closer Look: Unimak Pass and Bering Strait Vessel Traffic 294 --- 7.7 Fisheries Management Conservation Areas 296 --- Map 7.7 Fisheries Management Conservation Areas 298 --- 7.8 Subsistence 300 --- Maps 7.8.1a–g Subsistence Harvest Areas by Species 306 --- Map 7.8.2 Reported Subsistence Harvest 310 --- 7.9 A Closer Look: The Legal Framework for US Arctic Marine Resource Protection 312 --- 7.10 Conservation Areas 314 --- Map 7.10 Conservation Areas 318 --- Chapter 8: Conservation Summary 326
    Pages: Online-Ressource (332 Seiten) , Illustrationen, Diagramme, Karten
    Edition: 2nd edition
    Language: English
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  • 4
    Call number: S 99.0139(338)
    In: Wissenschaftliche Arbeiten der Fachrichtung Geodäsie und Geoinformatik der Leibniz Universität Hannover, Nr. 338
    Type of Medium: Series available for loan
    Pages: 153 Seiten , Illustrationen, Diagramme
    ISSN: 0174-1454
    Series Statement: Wissenschaftliche Arbeiten der Fachrichtung Geodäsie und Geoinformatik der Leibniz Universität Hannover Nr. 338
    Language: English
    Note: Dissertation, Gottfried Wilhelm Leibniz Universität Hannover, 2017 , Contents 1 Introduction 1.1 Motivation, research questions and overview 1.1.1 Rainfall estimation at high spatial and temporal resolution 1.1.2 Precipitation estimation with cars 1.1.3 Motion estimation from in-situ sensor data 1.2 Outline 2 Basics 2.1 Precipitation 2.1.1 Resolution, accuracy and precision of precipitation measurements 2.1.2 In-situ point measurements of precipitation by rain gauges 2.1.3 Weather radar 2.2 Wireless Sensor Networks 2.2.1 Modeling sensor networks 2.2.2 Sensor network algorithms and protocols 2.3 Statistics 2.3.1 Basics and notation 2.3.2 Regression 2.3.3 Stochastic processes 2.3.4 Stochastic filtering and the Kalman filter 2.3.5 Geostatistics 2.4 Interpolation methods 2.4.1 Inverse-Distance-Weighted 2.4.2 Ordinary kriging 2.4.3 Regression kriging 2.4.4 Cross-validation for performance assessment 2.5 Optical flow 2.5.1 Optical flow intensity conservation 2.5.2 Gradient-based optical flow 2.5.3 Probabilistic optical flow 3 Related Work 3.1 Quantitative precipitation estimation from rain gauges, weather radar and other data sources 3.1.1 Precipitation estimation with weather radar 3.1.2 Precipitation estimation by interpolation of rain gauges measurements 3.1.3 Geostatistical merging of radar and rain gauge data 3.1.4 Motion-based methods used in nowcasting 3.1.5 New data sources for precipitation estimation 3.2 Decentralized estimation with geosensor networks 3.2.1 Estimation of spatio-temporal field properties with GSN 3.2.2 Object-tracking with GSN 4 Methodology for precipitation intensity estimation at 1-min resolution 4.1 Time-window approach for estimation 4.1.1 Estimation of field motion 4.1.2 Weather radar upsampling 4.1.3 Variogram estimation 4.2 Estimation methods 4.2.1 Spatial rain gauge interpolation methods 4.2.2 Space-time symmetric rain gauge interpolation method 4.2.3 Space-time asymmetric rain gauge interpolation methods 4.2.4 Radar-rain gauge merging methods 4.2.5 Estimation methods solely based on radar 4.3 Summary 5 Methodology for precipitation intensity estimation with car sensors 5.1 Car sensors 5.1.1 Wiper Frequency Sensor 5.1.2 Xanonex optical sensor 5.1.3 Other sensors investigated 5.1.4 Experimental setup and preprocessing 5.2 Theoretical considerations for the calibration of the W-R relationship in the field . 5.3 Dependency between car speed, windscreen angle and sensor readings 5.3.1 Manually-operated windscreen wipers 5.3.2 Automatically-operated windscreen wipers 5.3.3 Xanonex optical sensor 5.4 Summary 6 Methodology for motion estimation with a geosensor network 6.1 Algorithm overview 6.2 Network and field model 6.3 Gradient constraint estimation in the network 6.3.1 Gradient constraint estimation from irregular data 6.3.2 Requirements on node stationarity and sampling synchronicity 6.3.3 Estimation of partial derivative error 6.3.4 Gradient constraint selection and derivation of gradient constraint error 6.4 Temporal coherence: Kalman filter for recursive motion estimation 6.4.1 Estimation of process noise Q 6.4.2 Estimation of measurement noise R 6.4.3 Difference to common Kalman filtering problems 6.5 Algorithm protocol 6.6 Algorithm complexity 6.6.1 Communication complexity 6.6.2 Load balance 6.6.3 Computational complexity of partial derivative estimation 6.6.4 Computational complexity of motion estimation 6.7 Summary 7 Results 7.1 Precipitation intensity estimation at 1-min resolution 7.1.1 Study area and data basis 7.1.2 Performance assessment via cross-validation 7.1.3 Exploratory and visual data analysis 7.1.4 Radar estimation and rain gauge cross-validation results 7.1.5 Summary 7.2 Precipitation intensity estimation with cars 7.2.1 Study area and data basis 7.2.2 Selection of the reference method 7.2.3 Manually-operated windscreen wipers 7.2.4 Automatically-operated windscreen wipers 7.2.5 Xanonex optical rain sensor 7.2.6 Results of experiments on the VW rain track 7.2.7 Summary 7.3 Motion estimation with a geosensor network 7.3.1 Study Area, sensor network and deployment strategies 7.3.2 Error measures 7.3.3 Setting the filter parameters 7.3.4 Results - simulated field 7.3.5 Results - radar field 7.3.6 Summary 8 Summary and discussion of the research hypotheses 8.1 Discussion of research hypotheses 1 and 2: 1-min precipitation intensity estimation 8.2 Discussion of research hypothesis 3: precipitation estimation with cars 8.3 Discussion of research hypothesis 4: decentralized motion estimation 8.4 Outlook 9 Appendix 9.1 Discussion on the 'frozen field' distance function 9.2 Executable Kalman filter equations for the motion estimation algorithm 9.3 Controllability and Observability of the Kalman filter for motion estimation List of Figures List of Tables References
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  • 5
    facet.materialart.12
    Princeton : Princeton University Press
    Call number: 9781400888665 (e-book)
    Type of Medium: 12
    Pages: 1 Online-Ressource (viii, 262 Seiten) , Diagramme, Illustrationen, Karten
    ISBN: 9781400888665 (e-book)
    Language: English
    Note: Contents Chapter 1 Introdution Chapter 2 Origins Building a Planet, Shaping the Oceans Water, Salt, and Circulation Life, Oxygen, and Carbon Chapter 3 Controls On change Orbital and Solar Changes Greenhouse Gases Plate Tectonics Impacts Chapter 4 Snowball earth and the explosions of life Into the Freezer Out of the Freezer, Into a Greenhouse A Tale of Two Explosions Reverberations Chapter 5 Oceans On acid About Acidification Acidification in Action Chapter 6 The age of reptiles Choking Oceans Salty Giants Chapter 7 Winter is coming Reconstructing Sea-Level Change The Great Northern Ice Ages Ocean Controls on CO2 A Seesaw in the Ocean Chapter 8 Future Oceans and climate Our Carbon Emissions Consequences Epilogue Acknowledgments Bibliography Index
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  • 6
    facet.materialart.12
    [Cham] : Springer
    Call number: 9783319540542 (e-book)
    Description / Table of Contents: Do you know silica, the tetrahedra of silicon and oxygen constituting the crystals of New Agers and the desiccant in a box of new shoes? It's no mere mundane mineral. As chemically reacting silicate rocks, silica set off the chain of events known as the origin of life. As biomineralized opal, it is the cell wall, skeleton, spicules, and scales of organisms ornamenting numerous lobes of the tree of life. Cryptocrystalline silica made into stone tools helped drive the evolution of our hands and our capability for complex grammar, music, and mathematics. As quartz crystals, silica is impressively electric and ubiquitous in modern technology (think sonar, radios, telephones, ultrasound, and cheap but precise watches). Silica is inescapable when we take a drink or mow the lawn and it has already started to save the Earth from the carbon dioxide we're spewing into the atmosphere. This book tells these scientific tales and more, to give dear, modest silica its due.
    Type of Medium: 12
    Pages: 1 Online-Ressource (xi, 201 Seiten) , Illustrationen
    ISBN: 9783319540542 , 978-3-319-54054-2
    Language: English
    Note: Contents 1 A Brief Introduction to the Players 1.1 Silicon 1.2 Silica 1.3 Silicic Acid 1.4 Silicate 1.5 Silicone 2 The Origin of Life Was Brought to You in Part by Silicate Rocks 2.1 Setting the Stage 2.2 A Flight of Fancy 2.3 The Early Earth Was Not Hellacious 2.4 A Fly in the Soup 2.5 The Lost City 2.6 Generating Organic Compounds 2.7 Inventing Metabolism 2.8 The World’s Earliest Biological Carbon Fixation 2.9 Replication Further Reading 3 The Making of Humankind: Silica Lends a Hand (and Maybe a Brain) 3.1 Stone Tools and Their Makers 3.1.1 The Earliest Stone Tools 3.1.2 The Oldowan Industry and Its Practitioners 3.1.3 The Acheulean Industry and Its Practitioners 3.1.4 Neanderthals and the Levallois Technique 3.1.5 Homo sapiens 3.2 Hands and Brains 3.2.1 Give Us a Hand 3.2.2 If I Only Had a Brain Further Reading 4 Mystical Crystals of Silica 4.1 What Is a Crystal? 4.2 Pyroelectricity 4.3 Piezoelectricity 4.4 Sonar 4.5 Quartz Oscillators 4.6 But Why Is There a Piezoelectric Effect? Further Reading 5 Glass Houses and Nanotechnology 5.1 Silica-Centric Musings on the Origin of Biomineralization 5.2 The Early Fossil Record of Silica Biomineralization 5.3 Not All Biomineralization Is Silica Biomineralization 5.4 The World’s First Arms Race 5.5 How to Make a Glass House: Man Versus Nature 5.5.1 Man 5.5.2 Nature 5.6 Some Silica Biomineralizing Organisms that We Are Learning From 5.6.1 Choanoflagellates 5.6.2 Siliceous Sponges 5.6.3 Diatoms 5.7 Siliceous Nanotechnology Further Reading 6 Chicks Need Silica, Too 6.1 It’s All About the Chicks 6.2 Silicosis 6.3 The Dog Days of Silica Medical Research 6.4 Collagen 6.5 Do Human Beings Require Silica? 6.6 To Supplement or not to Supplement 6.7 Silica, Aluminum, and Alzheimer’s Disease Further Reading 7 Of Fields, Phytoliths, and Sewage 7.1 All Plants Have Silica 7.2 Opal Phytoliths 7.3 The Benefits of Opal Phytoliths and of Dissolved Silica 7.4 Is Silica an Essential Plant Nutrient? 7.5 Impact of Agriculture on the Silica Cycle 7.6 The Growing Creep of Silica Removal 7.7 Let’s Go for a Walk Through Time 7.8 Silica in Sewage 7.9 A Plea for Hardy Souls Further Reading 8 Silica, Be Dammed! 8.1 To Put It in a Nutshell 8.2 A Brief History of Human Damming, or How Long Has This Been Going on 8.3 Dams and Silica 8.4 Dams, Eutrophication, and Silica 8.5 Case Study #1: The Laurentian Great Lakes 8.6 Case Study #2: The Baltic Sea 8.7 Case Study #3: The Black Sea 8.8 The Global View Further Reading 9 The Venerable Silica Cycle 9.1 The Silica Cycle 9.2 Silicate Weathering 9.3 Getting Silica from Continent to Ocean 9.4 The Weathering of Oceanic Crust 9.5 Silica Biomineralization in the Ocean 9.6 Silica’s Return to the Mantle 9.7 The Earth’s Early Ocean Was a Tremendously Siliceous Place 9.8 Silica, Cyanobacteria, and Banded Iron Formations 9.9 And then Along Came True Silica Biomineralization Further Reading 10 Silica Saves the Day 10.1 The Goldilocks Zone 10.2 Most of Us Can Model 10.2.1 The Warmth of the Sun 10.2.2 Albedo, Which Is Not a Pasta Sauce 10.2.3 Emissivity 10.3 The Importance of Greenhouse Gases 10.4 Silicate Weathering Consumes Carbon Dioxide 10.5 The Temperature Dependence of Silicate Weathering 10.6 The Paleocene-Eocene Thermal Maximum 10.7 Enhanced Weathering Further Reading
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  • 7
    Monograph available for loan
    Monograph available for loan
    Cambridge : Cambridge University Press
    Call number: PIK B 160-19-92620 ; PIK B 160-19-92620/2. Ex. ; PIK B 160-19-92620/3. Ex. ; PIK B 160-19-92620/4. Ex. ; PIK B 160-19-92620/5. Ex.
    Type of Medium: Monograph available for loan
    Pages: xxix, 765 Seiten , Diagramme
    Edition: Reprinted
    ISBN: 9781107004177 , 9780521178693
    Language: English
    Note: Contents: Part I. Economics and the Environment: 1. Environmental economics and the theory of externalities ; 2. Environmental problems and policy issues ; 3. Introduction to the theory of environmental policy ; Part II. The Design of Environmental Policy: 4. Imperfect information ; 5. Competitive output markets ; 6. Non-competitive output markets ; 7. Environmental policy with pre-existing distortions ; 8. Institutional topics in cap and trade programs ; 9. Ambient pollution control ; 10. Liability ; 11. Innovation and adoption of new technology ; 12. International environmental problems ; 13. Accumulating pollutants ; Part III. Valuing the Environment: 14. Theory of applied welfare analysis ; 15. Revealed preference models ; 16. Discrete choice models ; 17. Recreation ; 18. Property value models ; 19. Stated preference methods ; 20. Health valuation ; Part IV. The Practice of Environmental Economics: 21. Cost-benefit analysis: modeling ; 22. Cost-benefit analysis: empirical ; 23. Final thoughts.
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  • 8
    Call number: 9783319433943 (e-book)
    Description / Table of Contents: This book introduces the concept of soil security and its five dimensions: Capability, Capital, Condition, Connectivity and Codification. These five dimensions make it possible to understand soil's role in delivering ecosystem services and to quantify soil resource by measuring, mapping, modeling and managing it. Each dimension refers to a specific aspect: contribution to global challenges (Capability), value of the soil (Capital), current state of the soil (Condition), how people are connected to the soil (Connectivity) and development of good policy (Codification). This book considers soil security as an integral part of meeting the ongoing challenge to maintain human health and secure our planet's sustainability. The concept of soil security helps to achieve the need to maintain and improve the world’s soil for the purpose of producing food, fiber and freshwater, and contributing to energy and climate sustainability. At the same time it helps to maintain biodiversity and protects ecosystem goods and services.
    Type of Medium: 12
    Pages: 1 Online-Ressource (xviii, 469 Seiten) , Illustrationen, Diagramme, Karten
    ISBN: 9783319433943 , 978-3-319-43394-3
    ISSN: 2352-4774 , 2352-4782
    Series Statement: Progress in soil science
    Language: English
    Note: Contents Part I Rationale for Soil Security 1 Soil Security: A Rationale / Alex B. McBratney, Damien J. Field, Cristine L.S. Morgan, and Lorna E. Jarrett 2 Soil Security: Dimensions / Damien J. Field Part II Capability 3 Soil Capability: Exploring the Functional Potentials of Soils / Johan Bouma, M.K. van Ittersum, J.J. Stoorvogel, N.H. Batjes, P. Droogers, and M.M. Pulleman 4 Distinguishing Between Capability and Condition / Damien J. Field and T. Sanderson 5 Valuing of Soil Capability in Land Surface Modeling / Cristine L.S. Morgan, Yohannes T. Yimam, Michael Barlage, David Gochis, and Bright Dornblaser 6 Soil Capability for the USA Now and into the Future / Maxine J. Levin, R. Dobos, S. Peaslee, D.W. Smith, and C. Seybold 7 Quantifying Capability: GlobalSoilMap / Alex B. McBratney, Dominique Arrouays, and Lorna E. Jarrett 8 Testing the Links Between Soil Security, Sustainable Land Management Practices and Land Evaluation / Brian Murphy Part III Condition 9 General Concepts of Valuing and Caring for Soil / Alex B. McBratney, Damien J. Field, and Lorna E. Jarrett 10 Soil Health: Challenges and Opportunities / Diane E. Stott and Bianca N. Moebius-Clune 11 Using Soil Survey to Assess and Predict Soil Condition and Change / Skye Wills, Candiss Williams, C. Seybold, Linda Scheffe, Zamir Libohova, David Hoover, Curtis Talbot, and Joel Brown 12 Root-Microbe Interactions in Response to Soil Conditions / Anil Somenahally 13 Securing Our Soil in Intensive Monoculture Cropping Systems / Katie L. Lewis, Paul DeLaune, and Wayne Keeling 14 Soil Organic Carbon Stocks and Soil Respiration in Tropical Secondary Forests in Southern Mexico / Deb Raj Aryal, Bernardus Hendricus Joseph De Jong, Jorge Mendoza-Vega, Susana Ochoa-Gaona, and Ligia Esparza-Olguín 15 Simulating Impacts of Bioenergy Sorghum Residue Return on Soil Organic Carbon and Greenhouse Gas Emissions Using the DAYCENT Model / Yong Wang, Fugen Dou, Joseph O. Storlien, Jason P. Wight, Keith H. Paustian, Stephen J. Del Grosso, and Frank M. Hons 16 Cover Crops for Enriching Soil Carbon and Nitrogen Under Bioenergy Sorghum / Upendra M. Sainju, H.P. Singh, and B.P. Singh Part IV Capital 17 Economics, Energy, Climate Change, and Soil Security / Bruce A. McCarl 18 Understanding Soils’ Contribution to Ecosystem Services Provision to Inform Farm System Analysis / Estelle Dominati, A. Mackay, and J. Rendel 19 The Dollars and Cents of Soil Health / Charles M. Benbrook 20 The Value of Soil’s Contributions to Ecosystem Services / Alex B. McBratney, Cristine L.S. Morgan, and Lorna E. Jarrett 21 Economics of Land Degradation to Estimate Capital Value of Soil in Eurasia / Pavel Krasilnikov, Alexey Sorokin, Alisher Mirzabaev, Oleg Makarov, Anton Strokov, and Sergey Kiselev 22 Social Licensing to Secure Soil / Cristine L.S. Morgan, Gaylon D. Morgan, and Dianna Bagnall Part V Connectivity 23 Soil Renaissance and the Connection to Land Managers / Bill Buckner 24 Links Between Soil Security and the Influence of Soil on Human Health / Eric C. Brevik, Joshua J. Steffan, Lynn C. Burgess, and Artemi Cerdà 25 Soil Contamination and Human Health: A Major Challenge for Global Soil Security / Florence Carré, Julien Caudeville, Roseline Bonnard, Valérie Bert, Pierre Boucard, and Martine Ramel 26 The Measurement of Soil Security in Terms of Human Health: Examples and Ideas / Sung Chul Kim, Kyung Jae Lim, and Jae E. Yang 27 The Meta Soil Model: An Integrative Multi- model Framework for Soil Security / Sabine Grunwald, Katsutoshi Mizuta, Marcos B. Ceddia, Érika F.M. Pinheiro, R. Kay Kastner Wilcox, Carla P. Gavilan, C. Wade Ross, and Christopher M. Clingensmith 28 Integrating New Perspectives to Address Global Soil Security: Ideas from Integral Ecology / Sabine Grunwald, Christopher M. Clingensmith, Carla P. Gavilan, Katsutoshi Mizuta, R. Kay Kastner Wilcox, Érika F.M. Pinheiro, Marcos B. Ceddia, and C. Wade Ross 29 Applying the Meta Soil Model: The Complexities of Soil and Water Security in a Permanent Protection Area in Brazil / Marcos B. Ceddia, Sabine Grunwald, Érika F.M. Pinheiro, Katsutoshi Mizuta, Christopher M. Clingensmith, and Milton Marques Fernandes 30 Bridging the Research Management Gap to Restore Ecosystem Function and Social Resilience / W. Richard Teague 31 Engendering Connectivity to Soil Through Aesthetics / Richard J. MacEwan, Ayesha S.A. MacEwan, and Alexandra R. Toland 32 The Role of Master Gardeners in Providing Horticulture Education to Marion County, Florida, Residents / Josephine Leyte-Vidal Part VI Codification 33 Soil-Water-Food Nexus: A Public Opinion and Policy Perspective / Kent E. Portney 34 Whose Security is Important? Communicating Environmental Risk About Soil to a Diverse Audience / Ronald Amundson 35 Save our Soil to Save the Planet / Michael Jeffrey and Hayley Achurch 36 Protection of the Soil Resource in the Brazilian Environmental Legislation / Carlos Gustavo Tornquist and Tiago Broetto 37 Creating Incentives to Improve Soil Health Through the Federal Crop Insurance Program / Lara Bryant and Claire O’Connor 38 US Farm Programs and the Impacts on National and International Soil Security / Katina Dove Hanson and J. Michael Schmidt 39 Soil Security for Agricultural Productivity: The Policy Disconnect and a Promising Future / Andrea Koch 40 Securitisation / Alex B. McBratney and Lorna E. Jarrett 41 The Place of Soil in International Government Policy / Robert Hill 42 Translating Soil Science Knowledge to Public Policy / Luca Montanarella 43 Synthesis: Goals to Achieve Soil Security / Cristine L.S. Morgan, Alex B. McBratney, Damien J. Field, Andrea Koch, Johan Bouma, and Florence Carré Index
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  • 9
    Unknown
    Cambridge : Cambridge University Press
    Description / Table of Contents: Hydrocarbon production, gas recovery from shale, CO2 storage and water management have a common scientific underpinning: multiphase flow in porous media. This book provides a fundamental description of multiphase flow through porous rock, with emphasis on the understanding of displacement processes at the pore, or micron, scale. Fundamental equations and principal concepts using energy, momentum, and mass balance are developed, and the latest developments in high-resolution three-dimensional imaging and associated modelling are explored. The treatment is pedagogical, developing sound physical principles to predict flow and recovery through complex rock structures, while providing a review of the recent literature. This systematic approach makes it an excellent reference for those who are new to the field. Inspired by recent research, and based on courses taught to thousands of students and professionals from around the world, it provides the scientific background necessary for a quantitative assessment of multiphase subsurface flow processes, and is ideal for hydrology and environmental engineering students, as well as professionals in the hydrocarbon, water and carbon storage industries
    Pages: xx, 482 Seiten , Illustrationen, Diagramme
    ISBN: 978-1-107-09346-1
    Language: English
    Branch Library: GFZ Library
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  • 10
    Monograph available for loan
    Monograph available for loan
    Helmholtz-Zentrum Potsdam, Deutsches GeoForschungsZentrum GFZ
    Call number: M 17.90791
    Type of Medium: Monograph available for loan
    Pages: 56 Seiten , zahlreiche farbige Illustrationen
    Language: English
    Location: Upper compact magazine
    Branch Library: GFZ Library
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