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  • 1
    facet.materialart.
    Unknown
    Wien : [Verlag nicht ermittelbar] ; 22.1910/25(1925),3; 23.1914/31(1929/31),2-3; 24.1927,1-2; 25.1939,1; 26.1948,1; 27.1971-Band 76 (2022)
    Call number: S 91.1179
    ISSN: 0375-5797 , 0378-0864
    Parallel Title: 35=2 von European Conodont Symposium (ZDB) Guidebook, abstracts / European Conodont Symposium
    Parallel Title: 41=2 von Workshop on Agglutinated Foraminifera (ZDB) Proceedings / Workshop on Agglutinated Foraminifera. Geologische Bundesanstalt
    Parallel Title: 39=3 von International Nannoplankton Association Proceedings of the ... International Nannoplankton Association conference
    Parallel Title: 60=11 von Deutsche Gesellschaft für Geowissenschaften. Fachsektion GeoTop Internationale Jahrestagung der Fachsektion GeoTop der Deutschen Gesellschaft für Geowissenschaften
    Former Title: Vorg. Geologische Reichsanstalt Abhandlungen der Kaiserlich-Königlichen Geologischen Reichsanstalt, Wien
    Subsequent Title: Fortgesetzt durch Abhandlungen
    Language: German
    Branch Library: GFZ Library
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  • 2
    Call number: 9781493929818 (e-book)
    Description / Table of Contents: The meeting of Aquatic Noise 2013 will introduce participants to the most recent research data, regulatory issues and thinking about effects of man-made noise and will foster critical cross-disciplinary discussion between the participants. Emphasis will be on the cross-fertilization of ideas and findings across species and noise sources. As with its predecessor, The Effects of Noise on Aquatic Life: 3rd International Conference will encourage discussion of the impact of underwater sound, its regulation and mitigation of its effects. With over 100 contributions from leading researchers, a wide range of sources of underwater sound will be considered.
    Type of Medium: 12
    Pages: 1 Online Ressource ((XXX, 1292 Seiten) , Illustrationen
    Edition: Online-Ausg. Springer eBook Collection. Biomedical and Life Sciences
    ISBN: 9781493929818 , 978-1-4939-2981-8
    ISSN: 2214-8019 , 0065-2598
    Series Statement: Advances in experimental medicine and biology 875
    Language: English
    Note: Contents 1 Noise-Induced Hearing Loss: Permanent Versus Temporary Threshold Shifts and the Effects of Hair Cell Versus Neuronal Degeneration / M. Charles Liberman 2 Modeled and Measured Underwater Sound Isopleths and Implications for Marine Mammal Mitigation in Alaska / Lisanne A.M. Aerts and Bill Streever 3 Peer-Reviewed Studies on the Effects of Anthropogenic Noise on Marine Invertebrates: From Scallop Larvae to Giant Squid / Natacha Aguilar de Soto 4 Sources of Underwater Sound and Their Characterization / Michael A. Ainslie and Christ A.F. de Jong 5 Assessment of Marine Mammal Impact Zones for Use of Military Sonar in the Baltic Sea / Mathias H. Andersson and Torbjörn Johansson 6 Contribution to the Understanding of Particle Motion Perception in Marine Invertebrates / Michel André, Kenzo Kaifu, Marta Solé, Mike van der Schaar, Tomonari Akamatsu, Andreu Balastegui, Antonio M. Sánchez, and Joan V. Castell 7 Functional Morphology and Symmetry in the Odontocete Ear Complex / William Ary, Ted W. Cranford, Annalisa Berta, and Petr Krysl 8 A Low-Cost Open-Source Acoustic Recorder for Bioacoustics Research / John Atkins and Mark Johnson 9 Assessment of Impulsive and Continuous Low- Frequency Noise in Irish Waters / Suzanne Beck, Joanne O’Brien, Simon Berrow, Ian O’Connor, and Dave Wall 10 Is the Venice Lagoon Noisy? First Passive Listening Monitoring of the Venice Lagoon: Possible Effects on the Typical Fish Community / Marta Bolgan, Marta Picciulin, Antonio Codarin, Riccardo Fiorin, Matteo Zucchetta, and Stefano Malavasi 11 Effect of Pile-Driving Sounds on the Survival of Larval Fish / Loes J. Bolle, Christ A.F. de Jong, Stijn M. Bierman, Pieter J.G. van Beek, Peter W. Wessels, Ewout Blom, Cindy J.G. van Damme, Hendrik V. Winter, and René P.A. Dekeling 12 Challenge of Using Passive Acoustic Monitoring in High-Energy Environments: UK Tidal Environments and Other Case Studies / Cormac G. Booth 13 Hearing Mechanisms and Noise Metrics Related to Auditory Masking in Bottlenose Dolphins (Tursiops truncatus) / Brian K. Branstetter, Kimberly L. Bakhtiari, Jennifer S. Trickey, and James J. Finneran 14 Effects of Hatchery Rearing on the Structure and Function of Salmonid Mechanosensory Systems / Andrew D. Brown, Joseph A. Sisneros, Tyler Jurasin, and Allison B. Coffin 15 Effects of Impulsive Pile-Driving Exposure on Fishes / Brandon M. Casper, Thomas J. Carlson, Michele B. Halvorsen, and Arthur N. Popper 16 Review of the Effects of Offshore Seismic Surveys in Cetaceans: Are Mass Strandings a Possibility? / Manuel Castellote and Carlos Llorens 17 Addressing Challenges in Studies of Behavioral Responses of Whales to Noise / Douglas H. Cato, Rebecca A. Dunlop, Michael J. Noad, Robert D. McCauley, Eric Kniest, David Paton, and Ailbhe S. Kavanagh 18 Measurements of Operational Wind Turbine Noise in UK Waters / Samuel Cheesman 19 A Bioenergetics Approach to Understanding the Population Consequences of Disturbance: Elephant Seals as a Model System / Daniel P. Costa, Lisa Schwarz, Patrick Robinson, Robert S. Schick, Patricia A. Morris, Richard Condit, Daniel E. Crocker, and A. Marm Kilpatrick 20 Singing Fish in an Ocean of Noise: Effects of Boat Noise on the Plainfin Midshipman (Porichthys notatus) in a Natural Ecosystem / Sarika Cullis-Suzuki 21 Detection of Complex Sounds in Quiet Conditions by Seals and Sea Lions / Kane A. Cunningham, Brandon L. Southall, and Colleen Reichmuth 22 Offshore Dredger Sounds: Source Levels, Sound Maps, and Risk Assessment / Christ A.F. de Jong, Michael A. Ainslie, Floor Heinis, and Jeroen Janmaat 23 Effects of Offshore Wind Farms on the Early Life Stages of Dicentrarchus labrax / Elisabeth Debusschere, Bert de Coensel, Sofie Vandendriessche, Dick Botteldooren, Kris Hostens, Magda Vincx, and Steven Degraer 24 The European Marine Strategy: Noise Monitoring in European Marine Waters from 2014 / René Dekeling, Mark Tasker, Michael Ainslie, Mathias Andersson, Michel André, Fabrizio Borsani, Karsten Brensing, Manuel Castellote, John Dalen, Thomas Folegot, Sandra van der Graaf, Russell Leaper, Alexander Liebschner, Jukka Pajala, Stephen Robinson, Peter Sigray, Gerry Sutton, Frank Thomsen, Stefanie Werner, Dietrich Wittekind, and John V. Young 25 Potential Population Consequences of Active Sonar Disturbance in Atlantic Herring: Estimating the Maximum Risk / Lise Doksæter Sivle, Petter Helgevold Kvadsheim, and Michael Ainslie 26 Fulfilling EU Laws to Ensure Marine Mammal Protection During Marine Renewable Construction Operations in Scotland / Sarah J. Dolman, Mick Green, Sarah Gregerson, and Caroline R. Weir 27 Expert Elicitation Methods in Quantifying the Consequences of Acoustic Disturbance from Offshore Renewable Energy Developments / Carl Donovan, John Harwood, Stephanie King, Cormac Booth, Bruno Caneco, and Cameron Walker 28 Masking Experiments in Humans and Birds Using Anthropogenic Noises / Robert J. Dooling and Sandra H. Blumenrath 29 Documenting and Assessing Dolphin Calls and Ambient and Anthropogenic Noise Levels via PAM and a SPL Meter / Kathleen M. Dudzinski, Kelly Melillo-Sweeting, and Justin D. Gregg 30 Soundscapes and Larval Settlement: Larval Bivalve Responses to Habitat-Associated Underwater Sounds / David B. Eggleston, Ashlee Lillis, and DelWayne R. Bohnenstiehl 31 Characterizing Marine Soundscapes / Christine Erbe, Robert McCauley, and Alexander Gavrilov 32 Pile-Driving Noise Impairs Antipredator Behavior of the European Sea Bass Dicentrarchus labrax / Kirsty A. Everley, Andrew N. Radford, and Stephen D. Simpson 33 Using Reaction Time and Equal Latency Contours to Derive Auditory Weighting Functions in Sea Lions and Dolphins / James J. Finneran, Jason Mulsow, and Carolyn E. Schlundt 34 Does Primary Productivity Turn Up the Volume? Exploring the Relationship Between Chlorophyll a and the Soundscape of Coral Reefs in the Pacific / Pollyanna I. Fisher-Pool, Marc O. Lammers, Jamison Gove, and Kevin B. Wong 35 Expert Elicitation of Population-Level Effects of Disturbance / Erica Fleishman, Mark Burgman, Michael C. Runge, Robert S. Schick, and Scott Kraus 36 Current Status of Development of Methods to Assess Effects of Cumulative or Aggregated Underwater Sounds on Marine Mammals / Erica Fleishman, Bill Streever, Robyn Angliss, Christopher W. Clark, William T. Ellison, Adam Frankel, Jason Gedamke, Matthias Leu, Megan McKenna, Roberto Racca, Samantha Simmons, and Robert Suydam 37 Seismic Survey Footprints in Irish Waters: A Starting Point for Effective Mitigation / Thomas Folegot, Dominique Clorennec, Gerald Sutton, and Mark Jessopp 38 Stochastic Modeling of Behavioral Response to Anthropogenic Sounds / Adam S. Frankel, William T. Ellison, Kathleen J. Vigness-Raposa, Jennifer L. Giard, and Brandon L. Southall 39 Underwater Sound Levels at a Wave Energy Device Testing Facility in Falmouth Bay, UK / Joanne K. Garrett, Matthew J. Witt, and Lars Johanning 40 Predicting Anthropogenic Noise Contributions to US Waters / Jason Gedamke, Megan Ferguson, Jolie Harrison, Leila Hatch, Laurel Henderson, Michael B. Porter, Brandon L. Southall, and Sofie Van Parijs 41 Auditory Sensitivity and Masking Profiles for the Sea Otter (Enhydra lutris) / Asila Ghoul and Colleen Reichmuth 42 Are Masking-Based Models of Risk Useful? / Robert C. Gisiner 43 “Large” Tank Acoustics: How Big Is Big Enough? / Michael D. Gray, Peter H. Rogers, Arthur N. Popper, Anthony D. Hawkins, and Richard R. Fay 44 High-Resolution Analysis of Seismic Air Gun Impulses and Their Reverberant Field as Contributors to an Acoustic Environment / Melania Guerra, Peter J. Dugan, Dimitri W. Ponirakis, Marian Popescu, Yu Shiu, Aaron N. Rice, and Christopher W. Clark 45 Underwater Sound Propagation Modeling Methods for Predicting Marine Animal Exposure / Craig A. Hamm, Diana F. McCammon, and Martin L. Taillefer 46 Investigating the Effect of Tones and Frequency Sweeps on the Collective Behavior of Penned Herring (Clupea harengus) / Nils Olav Handegard, Kevin Boswell, Alex de Robertis, Gavin John
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  • 3
    Call number: 9781493931767 8 (e-book)
    Description / Table of Contents: This title brings to light the discoveries and insights into the lives of many marine species made possible over the last decade by passive acoustic recorders (PAR). Pop-ups, ARF, HARP, EAR, Bprobe, C-POD Atag, and Dtag are the acronyms of some of the many PARs that have changed our understanding of how marine animals live and strive in the ocean. Various types of PARs are used by different investigators in different areas of the world. These recorders have accumulated copious amounts of very important data, unveiling previously unknown information about large marine animals. Temporal, seasonal and spatial distribution patterns have been uncovered for many marine species. There have been many discoveries, new understandings and insights into how these animals live in and utilize the ocean and the importance of acoustics in their lives. Listening Within the Ocean summarizes these important discoveries, providing both a valuable resource for researchers and enjoyable reading for non-professionals interested in marine life.
    Type of Medium: 12
    Pages: 1 Online-Ressource (viii, 416 Seiten) , Illustrationen, Diagramme, Karten
    ISBN: 978-1-4939-3176-7 , 9781493931767
    ISSN: 2364-4915 , 2364-4923
    Series Statement: Modern acoustics and signal processing
    Language: English
    Note: Contents Introduction: Listening in the Ocean / Whitlow W.L. Au and Marc O. Lammers 2 A Review of Blue Whale Studies from HARUphones in the Pacific / Kathleen M. Stafford 3 Long-Term Monitoring of Cetaceans Using Autonomous Acoustic Recording Packages / Sean M. Wiggins and John A. Hildebrand 4 From Shrimp to Whales: Biological Applications of Passive Acoustic Monitoring on a Remote Pacific Coral Reef / Marc O. Lammers and Lisa M. Munger 5 Studying the Biosonar Activities of Deep Diving Odontocetes in Hawaii and Other Western Pacific Locations / Whitlow W.L. Au and Giacomo Giorli 6 Environmental Acoustic Recording System (EARS) in the Gulf of Mexico / George E. Ioup, Juliette W. Ioup, Natalia A. Sidorovskaia, Christopher O. Tiemann, Stan A. Kuczaj, Azmy S. Ackleh, Joal J. Newcomb, Baoling Ma, Robin Paulos, Alexander Ekimov, Grayson H. Rayborn Jr., James M. Stephens, and Arslan M. Tashmukhambetov 7 Listening to Echolocation Clicks with PODs / Nick Tregenza, Steve Dawson, Will Rayment, and Ursula Verfuss 8 PALAOA: The Perennial Acoustic Observatory in the Antarctic Ocean—Real- Time Eavesdropping on the Antarctic Underwater Soundscape / Holger Klinck, Lars Kindermann, and Olaf Boebel 9 Listening for Whales at the Station ALOHA Cabled Observatory / Julie N. Oswald, Helen Ou, Whitlow W.L. Au, Bruce M. Howe, and Fred Duennebier 10 Findings from U.S. Navy Hydrophone Ranges / David Moretti, Ronald Morrissey, Susan Jarvis, and Jessica Shaffer 11 Pinniped Sounds in the Polar Oceans / Jennifer L. Miksis-Olds, Ilse C. Van Opzeeland, Sofie M. Van Parijs, and Joshua Jones 12 Listening in the Ocean: New Discoveries and Insights on Marine Life from Autonomous Passive Acoustic Recorders / David Mann, James Locascio, and Carrie Wall 13 Passive Acoustic Monitoring in Benthic Marine Crustaceans: A New Research Frontier / Erica Staaterman 14 A Multiplatform Ultrasonic Event Recorder for Tagging, Towing, and Stationed Monitoring of Odontocetes / Tomonari Akamatsu 15 Signal Processing / David K. Mellinger, Marie A. Roch, Eva-Marie Nosal, and Holger Klinck Index
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  • 4
    facet.materialart.12
    Singapore : Springer | Beijing : Geological Publishing House
    Call number: 9789811005602 (e-book)
    Description / Table of Contents: This book provides a review of mechanical ice drilling technology, including the design, parameters, and performance of various tools and drills for making holes in snow, firn and ice. The material presents the historical development of ice drilling tools and devices from the first experience taken place more than 170 years ago to the present day and focuses on the modern vision of ice drilling technology. It is illustrated with numerous pictures, many of them published for the first time. This book is intended for specialists in ice core sciences, drilling engineers, glaciologists, and can be useful for high-school students and other readers who are very interested in engineering and cold regions technology
    Type of Medium: 12
    Pages: 1 Online-Ressource (XIV, 284 Seiten) , Illustrationen
    Edition: Online edition Springer eBook Collection. Earth and Environmental Science
    ISBN: 9789811005602 , 978-981-10-0560-2
    ISSN: 2364-9119 , 2364-9127
    Series Statement: Springer Geophysics
    Language: English
    Note: Contents Preface 1 Introduction to Ice Drilling Technology 1.1 Ice Drilling Targets and Aims 1.2 Structure of Ice Sheets and Glaciers 1.3 Classification of Ice Drilling Methods References 2 Yearly History of Ice Drilling from Nineteeth to the First Half of Twentieth Century References 3 Direct-Push Drilling 3.1 Drive Sampling 3.1.1 Basic Principles 3.1.2 Mt. Rose Sampler 3.1.3 Utah Snow Sampler 3.1.4 Federal Snow Sampler 3.1.5 Bowman Sampler 3.1.6 Rosen Sampler 3.1.7 Large Diameter Snow Samplers 3.1.8 Vibratory Drill 3.2 Penetrative Testing 3.2.1 Ski Pole Penetrometer 3.2.2 Ram Penetrometer 3.2.3 Snow Resistograph 3.2.4 Digital Thermo-Resistograph 3.2.5 Snow Micro-Penetrometer 3.2.6 SABRE Probe 3.2.7 Cone Penetrometer Testing 3.3 Summary References 4 Hand- and Power-Driven Portable Drills 4.1 Noncoring Augers 4.1.1 SFFEL Noncoring Auger 4.1.2 SIPRE/CRREL Ice Thickness Kit 4.1.3 Kovacs Ice Thickness Kit 4.1.4 AARI Portable Sled-Mounted Drilling Rig 4.1.5 Handheld Coal-Boring Augers 4.1.6 Ice Augers for Winter Fishing 4.2 Noncoring “Piston” Drill 4.3 Core Augers. 4.3.1 General Principles 4.3.2 SFFEL Auger 4.3.3 SIPRE Auger 4.3.4 CRREL Auger 4.3.5 Rand Auger 4.3.6 Big John 12″ Auger 4.3.7 PICO Lightweight Auger 4.3.8 Kovacs Auger 4.3.9 IGAS Hand Auger 4.3.10 Swiss Hand Auger 4.3.11 UCPH Hand Auger 4.3.12 “Prairie Dog” Auger 4.3.13 “Sidewinder” 4.3.14 IDDO Hand Auger 4.4 Core Drills with Teeth and Annular Bits 4.4.1 Taku Glacier Hand Drill 4.4.2 Canadian Portable Ice Drill 4.4.3 Tsykin’s Hand Drill 4.4.4 5th CAE Drill 4.4.5 Ice Core Drill with Annular Bit PI-8 4.5 Mini Drills 4.5.1 Livingston Island Mini Drill 4.5.2 Chipmunk Drill 4.6 Summary References 5 Percussion Drills 5.1 Cable-Tool Drill Rigs 5.1.1 IGAS Cable-Tool Rig 5.1.2 Cable-Tool of California Institute of Technology 5.1.3 Star Iron Works Cable-Tool 5.2 Pneumatic Drills 5.3 Rotary-Percussion Drills 5.4 Summary References 6 Conventional Machine-Driven Rotary Drill Rigs 6.1 Dry Drilling 6.1.1 Expéditions Polaires Françaises in Greenland 6.1.2 Baffin Island Expedition 6.1.3 Norwegian-British-Swedish Antarctic Expedition 6.1.4 Mirny Station, Antarctica 6.2 Auger Drilling 6.2.1 Mirny Station, Antarctica 6.2.2 McMurdo Station, Antarctica 6.2.3 Amundsen–Scott Station, South Pole 6.2.4 Subglacial Lake Ellsworth Camp 6.3 Commercial Drill Rigs for Ice Fishing 6.4 Air Rotary Drilling 6.4.1 Mirny, Antarctica 6.4.2 Site 2, Greenland 6.4.3 Byrd Station, Antarctica 6.4.4 Little America V, Antarctica 6.4.5 Franz Josef Land, Russian Arctic 6.4.6 Base Roi Baudouin, Antarctica 6.5 Rotary Drilling with Fluid Circulation 6.5.1 Taku Glacier, Alaska 6.5.2 Mer de Glace, French Alps 6.5.3 South Leduc Glacier, British Columbia 6.5.4 McMurdo Station, Antarctica 6.6 Wire-Line Drills 6.6.1 International Antarctic Glaciological Project, East Antarctica 6.6.2 Ross Ice Shelf Project 6.6.3 Base Druzhnaya, Antarctica 6.6.4 Black Rapids Glacier, Alaska 6.6.5 Isua Greenstone Belt, Southwestern Greenland 6.6.6 Foremore Glacier, British Columbia, Western Canada 6.6.7 Rapid Access Ice Drill (RAID) 6.6.8 Agile Sub-ice Geological (ASIG) Drill 6.7 Drilling in Rock Glaciers 6.7.1 Overview of Projects Using Conventional Drilling Equipment 6.7.2 Koci Drill 6.8 Summary References 7 Flexible Drill-Stem Drill Rigs 7.1 Rapid Shallow Drill Rigs 7.2 Rapid-Access Drill Rigs 7.2.1 Thermomechanical Drill 7.2.2 Coiled-Tubing Drill Rigs 7.2.3 RADIX 7.2.4 SUBGLACIOR Drilling Probe 7.3 Summary References 8 Cable-Suspended Electromechanical Auger Drills 8.1 Basic Principles 8.2 University of Iceland (UI) Drill 8.3 University of Bern (UB) Drills 8.3.1 Rufli Drill 8.3.2 Further Improved UB Drills 8.4 CRREL Drill 8.5 Institute of Low Temperature Science (ILTS) Drills 8.5.1 First Prototypes 8.5.2 ID-140 Drill 8.5.3 ILTS-140 Drill 8.5.4 MID-140 Drill 8.5.5 Portable ILTS-130 and -100 Drills 8.5.6 ILTS-130E(F) and ILTS-150 Drills 8.5.7 New Portable ILTS Drill 8.6 University of Copenhagen (UCPH) Drill 8.7 Laboratoire de Glaciologie et Géophysique de l’Environnement (LGGE) Drills 8.8 National Hydrology Research Institute (NHRI) Drill 8.9 Polar Ice Coring Office (PICO) 4″ Drill 8.10 Alfred-Wegener Institute (AWI) Drills 8.11 Australian National Antarctic Research Expedition (ANARE) Drill 8.12 BZXJ Drills 8.13 Geo Tecs Drills 8.13.1 Geo Tecs Prototype Shallow Drill 8.13.2 Further Improvements 8.13.3 Field Testing and Operations 8.14 Hilda/Simon/Eclipse Drills 8.14.1 Hilda/Simon Drills 8.14.2 Eclipse Drill 8.14.3 Field Testing and Coring 8.14.4 Badger-Eclipse Drill 8.15 Byrd Polar Research Center (BPRC) Drills 8.16 British Antarctic Survey (BAS) Drills 8.16.1 BAS/IMAU Drill 8.16.2 Rapid-Access Isotope Drill 8.17 FELICS Drills 8.17.1 3″ Drill 8.17.2 “Backpack Drill” 8.18 Blue Ice Drill (BID) 8.18.1 BID General Fescription 8.18.2 Operation and Performance 8.18.3 BID-Deep System 8.19 Summary References 9 Cable-Suspended Electromechanical Drills with Bottom-Hole Circulation 9.1 CRREL Electromechanical Drill 9.1.1 Drilling Equipment 9.1.2 Camp Century, Greenland 9.1.3 Byrd Station, Antarctica 9.2 ISTUK Drill 9.2.1 Drill System 9.2.2 Dye 3, Greenland (GISP) 9.2.3 Summit, Greenland (GRIP) 9.2.4 Law Dome, Antarctica 9.3 LGGE Electromechanical Drills 9.4 PICO-5.2″ Electromechanical Drill 9.4.1 Drill System 9.4.2 Summit, Greenland (GISP2) 9.4.3 Taylor Dome, Antarctica 9.4.4 Siple Dome, Antarctica 9.5 KEMS Electromechanical Drill 9.5.1 Drill System 9.5.2 Severnaya Zemlya, Russian Arctic 9.5.3 Vostok Station, Antarctica 9.6 JARE Electromechanical Drill 9.6.1 Drill System 9.6.2 Preliminary Tests 9.6.3 First Deep Ice Coring Project at Dome F, Antarctica 9.6.4 Second Deep Ice Coring Project at Dome F, Antarctica 9.6.5 Kunlun Station (Dome A), Antarctica 9.7 Hans Tausen (HT) Electromechanical Drill and Its Modifications 9.7.1 Basic Drill System 9.7.2 Hans Tausen Ice Cap, Greenland 9.7.3 NorthGRIP, Greenland 9.7.4 EPICA Dome C, Antarctica 9.7.5 EPICA-DML, Kohnen Station, Antarctica 9.7.6 Berkner Island, Antarctica 9.7.7 Talos Dome, Antarctica (TALDICE) 9.7.8 Flade Isblink Ice Cap, Greenland 9.7.9 NEEM Deep Ice Core Drilling, Greenland 9.7.10 James Ross Island, Antarctica 9.7.11 Fletcher Promontory, Antarctica 9.7.12 Roosevelt Island, Antarctica 9.7.13 NEEM, Greenland (UCPH Intermediate-Depth Ice Core Drilling System) 9.7.14 Aurora Basin North, Antarctica 9.7.15 Renland Ice Cap, Greenland 9.7.16 Summit, Greenland (IDDO Intermediate-Depth Drill) 9.7.17 South Pole, Antarctica (SPICE) 9.8 IDRA Drill 9.9 DISC Electromechanical Drill 9.9.1 Drill System 9.9.2 Field Testing at Summit, Greenland 9.9.3 WAIS Divide, Antarctica 9.9.4 Replicate Coring, WAIS Divide, Antarctica 9.10 IBED Drill 9.11 Summary References 10 Drilling Challenges and Perspectives for Future Development 10.1 Low-Temperature Drilling Fluids 10.1.1 Drilling Fluid Compositions 10.1.2 ESTISOL™ 240/COASOL™ Drilling Fluid 10.1.3 ESTISOL™ 140 Drilling Fluid 10.1.4 Low-Molecular Weight Dimethyl Siloxane Oils 10.1.5 Low-Molecular Weight Esters 10.1.6 Kerosene-Based Drilling Fluids Mixed with Fourth-Generation Foam-Expansion Agents 10.2 Ice Drilling Under Complicated Conditions 10.2.1 Permeable Snow-Firn 10.2.2 Brittle Ice Zone 10.2.3 Warm Ice 10.2.4 Debris-Containing Ice 10.2.5 Bedrock 10.2.6 Elimination of Sticking Drills 10.3 Advanced Drilling Systems 10.3.1 Rapid-Access Ice Drilling Systems for Subglacial Bedrock Drilling 10.3.2 Sidewall Drilling 10.3.3 Automated Drilling Systems References Appendix A: Records of Mechanical Drilling in Ice Appendix B: Abbreviations of Institutes, Organizations, and Projects
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  • 5
    facet.materialart.12
    [Cham] : Springer
    Call number: 9783319292793 (e-book)
    Description / Table of Contents: This book gives a unique insight into the current knowledge of krill population dynamics including distribution, biomass, production, recruitment, growth and mortality rates. Detailed analysis is provided on food and feeding, reproduction and krill behaviour. The volume provides an overview on the aspects of natural challenges to the species, which involve predation, parasites and the commercial exploitation of the resource and its management. A chapter on genetics shows the results of population subdivision and summarizes recent work on sequencing transcriptomes for studying gene function as part of the physiology of live krill. The focus of Chapter 4 is on physiological functions such as biochemical composition, metabolic activity and growth change with ontogeny and season; and will demonstrate which environmental factors are the main drivers for variability. Further discussed in this chapter are the bottle necks which occur in the annual life cycle of krill, and the mechanisms krill have adapted to cope with severe environmental condition.
    Type of Medium: 12
    Pages: 1 Online-Ressource (xxi, 441 Seiten) , Illustrationen, Diagramme
    ISBN: 9783319292793 , 978-3-319-29279-3
    ISSN: 2468-5712 , 2468-5720
    Series Statement: Advances in polar ecology
    Language: English
    Note: Contents 1 Introducing Antarctic Krill Euphausia superba Dana, 1850 / Volker Siegel 2 Distribution, Biomass and Demography of Antarctic Krill, Euphausia superba / Volker Siegel and Jonathan L. Watkins 3 Age, Growth, Mortality, and Recruitment of Antarctic Krill, Euphausia superba / Christian S. Reiss 4 Physiology of Euphausia superba / Bettina Meyer and Mathias Teschke 5 Feeding and Food Processing in Antarctic Krill (Euphausia superba Dana) / Katrin Schmidt and Angus Atkinson 6 Reproduction and Larval Development in Antarctic Krill (Euphausia superba) / So Kawaguchi 7 Genetics of Antarctic Krill / Simon N. Jarman and Bruce E. Deagle 8 Swarming and Behaviour in Antarctic Krill / Geraint A. Tarling and Sophie Fielding 9 The Importance of Krill Predation in the Southern Ocean / Philip N. Trathan and Simeon L. Hill 10 Parasites and Diseases / Jaime Go´mez-Gutie´rrez and Jose´ Rau´l Morales-A´ vila 11 The Fishery for Antarctic Krill: Its Current Status and Management Regime / Stephen Nicol and Jacqueline Foster Glossary Subject Index Genera and Species Index
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  • 6
    Call number: 9783319241128 (e-books)
    Description / Table of Contents: This report examines the scientific basis for the use of remotely sensed data, particularly Normalized Difference Vegetation Index (NDVI), primarily for the assessment of land degradation at different scales and for a range of applications, including resilience of agro-ecosystems. Evidence is drawn from a wide range of investigations, primarily from the scientific peer-reviewed literature but also non-journal sources. The literature review has been corroborated by interviews with leading specialists in the field. The report reviews the use of NDVI for a range of themes related to land degradation, including land cover change, drought monitoring and early warning systems, desertification processes, greening trends, soil erosion and salinization, vegetation burning and recovery after fire, biodiversity loss, and soil carbon. This SpringerBrief also discusses the limits of the use of NDVI for land degradation assessment and potential for future directions of use. A substantial body of peer-reviewed research lends unequivocal support for the use of coarse-resolution time series of NDVI data for studying vegetation dynamics at global, continental and sub-continental levels. There is compelling evidence that these data are highly correlated with biophysically meaningful vegetation characteristics such as photosynthetic capacity and primary production that are closely related to land degradation and to agroecosystem resilience.
    Type of Medium: 12
    Pages: 1 Online-Ressource (xx, 110 Seiten) , Illustrationen
    ISBN: 9783319241128 , 978-3-319-24112-8
    ISSN: 2191-5547 , 2191-5555
    Series Statement: SpringerBriefs in environmental science
    Language: English
    Note: Contents Introduction 1.1 Introduction 1.2 Land Degradation in the UNCCD and GEF 1.3 Concepts, Processes, and Scales of Land Degradation 1.4 Assessment of Resilience of Agroecosystems 2 The Potential for Assessment of Land Degradation by Remote Sensing 2.1 Normalized Difference Vegetation Index 2.2 Remote Sensing Features That Characterize NDVI- Based Assessments of Land Degradation 2.3 Other Vegetation Indices Closely Related to NDVI 2.3.1 Indices Closely Related to NDVI 2.3.2 Comparing NDVI to EVI 3 Applications of NDVI for Land Degradation Assessment 3.1 Land-Use and Land-Cover Change 3.2 Drought and Drought Early Warning 3.3 Desertification 3.4 Soil Erosion 3.5 Soil Salinization 3.6 Vegetation Burning 3.7 Soil Organic Carbon (SOC) 3.8 Biodiversity Monitoring and Conservation 3.9 Monitoring Ecosystem Resilience 4 Limits to the Use of NDVI in Land Degradation Assessment 5 Key Issues in the Use of NDVI for Land Degradation Assessment 5.1 NDVI, NPP, and Land Degradation 5.2 NDVI, RUE, and Land Degradation 5.3 Separating the Effects of Other Causes of NDVI Changes 5.4 Abrupt Changes 6 Development of Land Degradation Assessments 7 Experts’ Opinions on the Use of NDVI for Land Degradation Assessment 7.1 NDVI: Rainfall Proportionality, an Important Consideration 7.2 Building on the GLADA Assessment 8 Main Global NDVI Datasets, Databases, and Software 8.1 Main NDVI Datasets 8.2 Quality-Related Considerations 8.3 Precipitation Datasets 8.4 NDVI Software 9 Country-Level Use of Satellite Products to Detect and Map Land Degradation Processes 10 Challenges to the Use of NDVI in Land Degradation Assessments 11 Recommendations for Future Application of NDVI 11.1 In the Convention National Reporting 11.2 In a Revised GEF Resource Allocation Methodology 12 Conclusion Appendix A Inventory of Some Global and Sub-global Remote Sensing-Based Land Degradation Assessments Appendix B Use of Remote Sensing-Derived Land Productive Capacity Dynamics for the New World Atlas of Desertification (WAD) Appendix C Developments with GLADA Appendix D China’s Experiences on the Usefulness of GLADA Appendix E Main Features of Image Products from the Different Sensors Appendix F UNCCD Core Indicators for National Reporting: ICCD/COP(11)/CST/2 Appendix G Current Cost of Selected Satellite Imagery Appendix H Software for Processing Satellite Images to Develop the NDVI References
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  • 7
    facet.materialart.12
    [Cham] : Springer
    Associated volumes
    Call number: 9783319252025 (e-book)
    In: Theory and applications of transport in porous media, Volume 27
    Description / Table of Contents: This book treats the mechanics of porous materials infiltrated with a fluid (poromechanics), focussing on its linear theory (poroelasticity). Porous materials from inanimate bodies such as sand, soil and rock, living bodies such as plant tissue, animal flesh, or man-made materials can look very different due to their different origins, but as readers will see, the underlying physical principles governing their mechanical behaviors can be the same, making this work relevant not only to engineers but also to scientists across other scientific disciplines. Readers will find discussions of physical phenomena including soil consolidation, land subsidence, slope stability, borehole failure, hydraulic fracturing, water wave and seabed interaction, earthquake aftershock, fluid injection induced seismicity and heat induced pore pressure spalling as well as discussions of seismoelectric and seismoelectromagnetic effects. The work also explores the biomechanics of cartilage, bone and blood vessels. Chapters present theory using an intuitive, phenomenological approach at the bulk continuum level, and a thermodynamics-based variational energy approach at the micromechanical level. The physical mechanisms covered extend from the quasi-static theory of poroelasticity to poroelastodynamics, poroviscoelasticity, porothermoelasticity, and porochemoelasticity. Closed form analytical solutions are derived in details. This book provides an excellent introduction to linear poroelasticity and is especially relevant to those involved in civil engineering, petroleum and reservoir engineering, rock mechanics, hydrology, geophysics, and biomechanics.
    Type of Medium: 12
    Pages: 1 Online-Ressource (893 Seiten) , Illustrationen, Diagramme
    ISBN: 9783319252025 (e-book) , 978-3-319-25202-5
    ISSN: 2213-6940 , 0924-6118
    Series Statement: Theory and applications of transport in porous media Volume 27
    Language: English
    Note: Contents 1 Introduction 1.1 Porous Material 1.2 Physical Mechanism 1.2.1 Drained and Undrained Responses 1.2.2 Time and Length Scale 1.2.3 Skempton Pore Pressure Effect 1.2.4 Effective Stress for Volumetric Deformation 1.2.5 Effective Stress for Pore Collapse 1.2.6 Fluid Storage 1.2.7 Thermoelasticity Analogy 1.2.8 Coupled Versus Uncoupled Diffusion 1.3 Poroelastic Phenomena 1.3.1 Borehole Failure 1.3.2 Mandel-Cryer Effect 1.3.3 Noordbergum Effect 1.3.4 Land Subsidence 1.3.5 Slope Stability and Fault Slippage 1.3.6 Fluid Induced Seismicity 1.3.7 Outburst of Coal 1.3.8 Hydraulic Fracturing 1.3.9 Water Wave and Seabed Interaction 1.3.10 Tidal and Barometric Efficiency 1.3.11 Biomechanics 1.3.12 Poroviscoelasticity and Anelastic Strain Recovery 1.3.13 Porothermoelasticity and Thermal Fracturing 1.3.14 Poroelastodynamics and Seismoelectric Effect 1.3.15 Swelling of Clay and Shale 1.3.16 Nanoporous Material References 2 Constitutive Equation 2.1 Physical Versus Phenomenological Approach 2.2 Stress and Strain of Porous Medium 2.2.1 Stress 2.2.2 Strain 2.3 Poroelastic Constitutive Equation 2.3.1 Isotropic Elastic Material 2.3.2 Isotropic Poroelastic Material 2.3.3 Reciprocal Work Theorem 2.3.4 Stress-Strain Relation 2.3.5 Strain-Stress Relation 2.4 Bulk Material Constant 2.4.1 Drained and Undrained Constant 2.4.2 Effective Stress Coefficient 2.4.3 Pore Pressure Coefficient 2.4.4 Storage Coefficient References 3 Micromechanics 3.1 Micromechanical Analysis 3.1.1 Solid and Pore Volumetric Strain 3.1.2 Fluid Volumetric Strain 3.1.3 Link Among Material Constants 3.2 Ideal Porous Medium 3.3 Effective Modulus 3.3.1 Mackenzie Model 3.3.2 Walsh Model 3.3.3 Budiansky and O’Connell Model 3.3.4 Bounds on Material Constants 3.4 Nonlinear Model 3.4.1 Effective Stress Dependent Pore Compressibility 3.4.2 Compaction Induced Permeability Change 3.5 Laboratory Test 3.5.1 Drained Test 3.5.2 Undrained Test 3.5.3 Unjacketed Test 3.6 Table of Poroelastic Constants References 4 Variational Energy Formulation 4.1 Internal and External Stress and Strain 4.1.1 Porosity 4.1.2 Volume and Surface Averaging of Elastic Material 4.1.3 Volume and Surface Averaging of Porous Material 4.1.4 Linkage Between Internal and External Strains 4.2 Thermodynamic Principles 4.3 Variational Formulation 4.3.1 Virtual Work 4.3.2 Internal Energy 4.3.3 Porosity Equilibrium 4.4 Constitutive Equation 4.4.1 Linear Material Model 4.4.2 Linear Model 4.5 Intrinsic Material Constant 4.5.1 Effective Solid Bulk Modulus 4.5.2 Fundamental Deformation Mode 4.5.3 Microisotropy and Microhomogeneity: Ideal Porous Medium 4.6 Link with Phenomenological Model 4.6.1 Link with Bulk Continuum Model 4.6.2 Link with Micromechanics Model 4.7 Deviation from Ideal Porous Medium 4.8 Limiting Material Properties 4.8.1 Ideal Porous Medium 4.8.2 Granular Material 4.8.3 Soil Mechanics Model: Saturated 4.8.4 Soil Mechanics Model: Nearly Saturated 4.8.5 Highly Compressible Solid 4.8.6 Highly Compressible Fluid 4.9 Material Stability and Energy Diagram 4.10 Semilinear Model 4.10.1 Geometric Nonlinearity 4.10.2 Structural Nonlinearity 4.11 Laboratory Measurement of Intrinsic Constant References 5 Anisotropy 5.1 Anisotropic Constitutive Equation 5.1.1 Elasticity 5.1.2 Poroelastic Stress-Strain Relation 5.1.3 Poroelastic Strain-Stress Relation 5.2 Material Symmetry 5.2.1 Orthotropy 5.2.2 Transverse Isotropy 5.2.3 Isotropy 5.3 Micromechanics 5.4 Ideal Porous Medium 5.5 Example References 6 Governing Equation 6.1 Darcy’s Law 6.1.1 Darcy’s Empirical Law 6.1.2 Homogenization Theory 6.1.3 Intrinsic Permeability and Mobility Coefficient 6.1.4 Irreversible Thermodynamics Process 6.2 Other Physical Laws 6.2.1 Mass Conservation 6.2.2 Force Equilibrium 6.3 Governing Equation 6.3.1 Navier-Cauchy Equation 6.3.2 Diffusion Equation 6.3.3 Compatibility Equation 6.3.4 Harmonic Relation 6.3.5 Orthotropy 6.3.6 Transverse Isotropy 6.4 Degenerated Governing Equation 6.4.1 Drained and Undrained State 6.4.2 Soil Mechanics Model 6.4.3 Irrotational Displacement Field 6.4.4 Uncoupling of Diffusion Equation 6.5 Boundary Value Problem 6.5.1 Existence and Uniqueness 6.5.2 Boundary Condition 6.6 Field Equation 6.6.1 Biot Function 6.6.2 Biot Decomposition 6.6.3 McNamee-Gibson Displacement Function References 7 Analytical Solution 7.1 Review of Early Work 7.2 Uniaxial Strain 7.2.1 Isotropy 7.2.2 Transverse Isotropy 7.3 One-Dimensional Consolidation Problem 7.3.1 Terzaghi’s Consolidation Problem 7.3.2 Loading by Fluid Pressure 7.3.3 Variable Rete Loading 7.3.4 Harmonic Excitation 7.4 Plane Strain 7.4.1 Orthotropy 7.4.2 Isotropy 7.4.3 Volumetric Strain and Rotation Formulation 7.5 Generalized Plane Strain 7.5.1 Definition of Generalized Plane Strain 7.5.2 Pure Shear 7.5.3 Warping 7.5.4 Torsion 7.5.5 Plane Strain 7.5.6 Axial Strain 7.5.7 Pure Bending 7.6 Pure Bending of Plate 7.6.1 Bending of Cantilever Plate 7.6.2 Buckling of Axially Loaded Plate 7.7 Mandel Problem 7.8 Water Wave Over Seabed 7.9 Spherical Symmetry 7.10 Cryer Problem 7.11 Spherical Cavity 7.11.1 Pressurized Cavity 7.11.2 Excavated Cavity 7.11.3 Pore Pressure Meter Problem 7.12 Axial Symmetry 7.13 Cylinder Problem 7.13.1 Solid Cylinder 7.13.2 Hollow Cylinder 7.14 Borehole Problem 7.14.1 Plane Strain Borehole Problem 7.14.2 Inclined Borehole Problem 7.15 Borehole and Cylinder Application Problems 7.15.1 Retrieval of Cylindrical Core 7.15.2 Excavated Borehole 7.15.3 Fluid Extraction and Injection 7.15.4 Borehole Breakdown Pressure 7.15.5 Borehole Stability Analysis 7.16 Moving Load on Half Plane 7.17 Plane Strain Half Space and Layered Problem 7.17.1 General Solution for Layered Problem 7.17.2 Plane Strain Half Space Problem 7.18 Axial Symmetry Half Space Problem References 8 Fundamental Solution and Integral Equation 8.1 Reciprocal Theorem 8.1.1 Green’s Second Identity 8.1.2 Betti-Maxwell Reciprocal Theorem 8.1.3 Reciprocal Theorem of Poroelasticity 8.2 Somigliana Integral Equation 8.2.1 Green’s Third Identity 8.2.2 Elasticity 8.2.3 Poroelasticity 8.3 Fredholm Integral Equation 8.3.1 Potential Problem 8.3.2 Elasticity 8.3.3 Poroelasticity 8.4 Stress Discontinuity Method 8.5 Displacement Discontinuity Method 8.6 Dislocation Method 8.7 Galerkin Integral Equation 8.8 Fundamental Solution 8.8.1 Elementary Fundamental Solution 8.8.2 Elasticity Fundamental Solution 8.9 Poroelasticity Fundamental Solution 8.10 Fluid Source 8.10.1 Continuous Source 8.10.2 Instantaneous Source 8.11 Fluid Dipole 8.11.1 Continuous Dipole 8.11.2 Instantaneous Dipole 8.12 Fluid Dilatation 8.12.1 Continuous Fluid Dilatation 8.12.2 Instantaneous Fluid Dilatation 8.13 Fluid Force 8.13.1 Continuous Fluid Force 8.13.2 Instantaneous Fluid Force 8.14 Fluid Dodecapole 8.15 Total Force 8.15.1 Continuous Total Force 8.15.2 Instantaneous Total Force 8.16 Solid Quadrupole and Hexapole 8.17 Solid Center of Dilatation 8.18 Displacement Discontinuity 8.19 Edge Dislocation 8.20 Fundamental Solution Relation Based on Reciprocity References 9 Poroelastodynamics 9.1 Dynamic Equilibrium Equation 9.2 Dynamic Permeability 9.3 Governing Equation 9.4 Wave Propagation 9.4.1 Elastic Wave 9.4.2 Poroelastic Wave 9.5 Phase Velocity and Attenuation 9.5.1 Phase Velocity 9.5.2 Attenuation 9.5.3 Extended Biot Models 9.6 One-Dimensional Wave Problem 9.6.1 Half Space 9.6.2 Finite Thickness Layer 9.7 Thermoelasticity Analogy 9.8 Poroelastodynamics Fundamental Solution 9.8.1 Elastodynamics Fundamental Solution 9.8.2 Helmholtz Decomposition 9.8.3 Three-Dimensional Point Force Solution 9.8.4 Three-Dimensional Fluid Source Solution 9.8.5 Two-Dimensional Fundamental Solution 9.9 Integral Equation Representation 9.10 Plane Wave Reflection and Refraction 9.10.1 Plane Strain Wave Solution 9.10.2 Reflection on Free Surface—Non-Dissipative Medium 9.10.3 Reflection on Free Surface—Dissipative Medium 9.10.4 Impermeable Surface 9.10.5 Fluid and Porous Medium Interface References 10 Poroviscoelasticity 10.1 Viscoelasticity 10.1.1 Spring and Dashpot Model 10.1.2 Correspondence Principle
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  • 8
    Call number: PIK 23-95232
    Type of Medium: Monograph available for loan
    Pages: 332 Seiten , Diagramme
    ISBN: 9783731612223
    Series Statement: Die Wirtschaft der Gesellschaft 2
    Language: German , English
    Note: Beiträge überwiegend deutsch, teilweise englisch
    Location: A 18 - must be ordered
    Branch Library: PIK Library
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  • 9
    Call number: 9783319256436 (e-book)
    Description / Table of Contents: This book is a useful guide for researchers in ecology and earth science interested in the use of accelerator mass spectrometry technology. The development of research in radiocarbon measurements offers an opportunity to address the human impact on global carbon cycling and climate change. Presenting radiocarbon theory, history, applications, and analytical techniques in one volume builds a broad outline of the field of radiocarbon and its emergent role in defining changes in the global carbon cycle and links to climate change. Each chapter presents both classic and cutting-edge studies from different disciplines involving radiocarbon and carbon cycling. The book also includes a chapter on the history and discovery of radiocarbon, and advances in radiocarbon measurement techniques and radiocarbon theory. Understanding human alteration of the global carbon cycle and the link between atmospheric carbon dioxide levels and climate remains one of the foremost environmental problems at the interface of ecology and earth system science. Many people are familiar with the terms ‘global warming’ and ‘climate change’, but fewer are able to articulate the science that support these hypotheses. This book addresses general questions such as: what is the link between the carbon cycle and climate change; what is the current evidence for the fate of carbon dioxide added by human activities to the atmosphere, and what has caused past changes in atmospheric carbon dioxide? How can the radiocarbon and stable isotopes of carbon combined with other tools be used for quantifying the human impact on the global carbon cycle?
    Type of Medium: 12
    Pages: 1 Online-Ressource (VII, 315 Seiten) , Illustrationen, Diagramme
    ISBN: 9783319256436 , 978-3-319-25643-6
    Language: English
    Note: Contents 1 Radiocarbon and the Global Carbon Cycle / E.A.G. Schuur, S.E. Trumbore, E.R.M. Druffel, J.R. Southon, A. Steinhof, R.E. Taylor and J.C. Turnbull 2 Radiocarbon Dating: Development of a Nobel Method / R.E. Taylor 3 Radiocarbon Nomenclature, Theory, Models, and Interpretation: Measuring Age, Determining Cycling Rates, and Tracing Source Pools / S.E. Trumbore, C.A. Sierra and C.E. Hicks Pries 4 Radiocarbon in the Atmosphere / J.C. Turnbull, H. Graven and N.Y. Krakauer 5 Radiocarbon in the Oceans / E.R.M. Druffel, S.R. Beaupré and L.A. Ziolkowski 6 Radiocarbon in Terrestrial Systems / E.A.G. Schuur, M.S. Carbone, C.E. Hicks Pries, F.M. Hopkins and S.M. Natali 7 Paleoclimatology / J.R. Southon, R. De Pol-Holz and E.R.M. Druffel 8 Accelerator Mass Spectrometry of Radiocarbon / Axel Steinhof 9 Preparation for Radiocarbon Analysis / S.E. Trumbore, X. Xu, G.M. Santos, C.I. Czimczik, S.R. Beaupré, M.A. Pack, F.M. Hopkins, A. Stills, M. Lupascu and L. Ziolkowski
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  • 10
    Call number: 9783319249452 (e-book)
    Description / Table of Contents: This book covers the state-of-the-art of microalgae physiology and biochemistry (and the several –omics). It serves as a key reference work for those working with microalgae, whether in the lab, the field, or for commercial applications. It is aimed at new entrants into the field (i.e. PhD students) as well as experienced practitioners. It has been over 40 years since the publication of a book on algal physiology. Apart from reviews and chapters no other comprehensive book on this topic has been published. Research on microalgae has expanded enormously since then, as has the commercial exploitation of microalgae. This volume thoroughly deals with the most critical physiological and biochemical processes governing algal growth and production.
    Type of Medium: 12
    Pages: 1 Online-Ressource (x, 681 Seiten) , Illustrationen, Diagramme
    ISBN: 9783319249452 , 978-3-319-24945-2
    ISSN: 2543-0599 , 2543-0602
    Series Statement: Developments in applied phycology 6
    Language: English
    Note: Contents Part I The Algae Cell The Cell Cycle of Microalgae / Vilém Zachleder, Kateřina Bišová, and Milada Vítová Biosynthesis of the Cell Walls of the Algae / David S. Domozych Part II The Fundamental Physiological Processes Photosynthesis and Light Harvesting in Algae / Anthony W. Larkum Carbon Acquisition by Microalgae / John Beardall and John A. Raven Fundamentals and Recent Advances in Hydrogen Production and Nitrogen Fixation in Cyanobacteria / Namita Khanna, Patrícia Raleiras, and Peter Lindblad Dark Respiration and Organic Carbon Loss / John A. Raven and John Beardall Part III Nutrients and Their Acquisition Combined Nitrogen / John A. Raven and Mario Giordano Nutrients and Their Acquisition: Phosphorus Physiology in Microalgae / Sonya T. Dyhrman Sulphur and Algae: Metabolism, Ecology and Evolution / Mario Giordano and Laura Prioretti Micronutrients / Antonietta Quigg Iron / Adrian Marchetti and Maria T. Maldonado Selenium in Algae / Hiroya Araie and Yoshihiro Shiraiwa Silicification in the Microalgae / Zoe V. Finkel Calcification / Alison R. Taylor and Colin Brownlee Part IV Algae Interactions with Environment Chemically-Mediated Interactions in Microalgae / Michael A. Borowitzka Coping with High and Variable Salinity: Molecular Aspects of Compatible Solute Accumulation / Martin Hagemann Effects of Global Change, Including UV and UV Screening Compounds / Richa, Rajeshwar P. Sinha, and Donat-P. Häder Part V Secondary Metabolites Lipid Metabolism in Microalgae / Inna Khozin-Goldberg Sterols in Microalgae / John K. Volkman Carotenoids / Einar Skarstad Egeland Exocellular Polysaccharides in Microalgae and Cyanobacteria: Chemical Features, Role and Enzymes and Genes Involved in Their Biosynthesis / Federico Rossi and Roberto De Philippis Algae Genome-Scale Reconstruction, Modelling and Applications / Cristiana G.O. Dal’Molin and Lars K. Nielsen Part VI Applications Algal Physiology and Large-Scale Outdoor Cultures of Microalgae / Michael A. Borowitzka Part VII Systematics and Taxonomy Systematics, Taxonomy and Species Names: Do They Matter? / Michael A. Borowitzka
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