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  • 1
    Series available for loan
    Series available for loan
    Hanover, NH : U.S. Army Cold Regions Research and Engineering Laboratory
    Associated volumes
    Call number: ZSP-201-89/2
    In: CRREL Report, 89-2
    Description / Table of Contents: A brash ice jam in the South Channel of the St. Clair River was profiled in February 1987 using a helicopter-borne short-pulse radar operating in the UHF band near 500 MHz. During the same time, measurements of the brash ice depth and water temperature were made from a Coast Guard icebreaker. The returned radar pulses consisted of a strong coherent reflection from the water surface, preceded (and followed) by incoherent returns from the brash ice. The measured waveform time delays were then converted to mean freeboard height of the brash ice pieces above the water surface. Given the mean freeboard height, an estimate of the total brash ice thickness was made. This estimate was greater than the range of the direct shipboard measurements. The difference is believed due to differences between ice porosity above and below the water line, to melting within the ice and to partial submergence of some of the surface pieces. It is concluded that this technique could be used for mapping relative brash ice depth if the complexities of automating waveform analysis could be overcome.
    Type of Medium: Series available for loan
    Pages: iv, 25 Seiten , Illustrationen
    Series Statement: CRREL Report 89-2
    Language: English
    Note: CONTENTS Abstract Preface Introduction Objectives and procedures Equipment Radar Brash ice probe Temperature measurements St. Clair River ice conditions Results and discussion Thickness and temperature Size distribution Radar survey Discussion of errors Porosity Phase state of the ice Partial submergence of individual pieces Spectra of reflected energy Conclusions and recommendations Literature cited Appendix A: Laboratory verification of surface scattering from a simulated ice jam Appendix B: Display of digitized and processed data
    Location: AWI Archive
    Branch Library: AWI Library
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  • 2
    Keywords: Proteins . ; Evolution (Biology). ; Biophysics. ; Protein Biochemistry. ; Evolutionary Biology. ; Biophysics.
    Description / Table of Contents: Introduction -- Ice and its formation -- Ice formation in living organisms -- Fish antifreeze proteins -- Insect antifreeze proteins -- Plant antifreeze proteins -- Antifreeze proteins in other species -- Molecular origins and mechanisms of fish antifreeze evolution.
    Abstract: This first volume provides a comprehensive overview on evolutionary, environmental and systematic aspects of antifreeze proteins. It shortly explains the physical properties of ice and further intelligibly describes the biology of the antifreeze proteins in different organisms. It offers a detailed insight into their history of evolution. In addition the book discusses the status of the current knowledge and ongoing research and highlights also those parts, where further investigation needs to be done. Together with the second volume on the biochemistry and molecular biology of antifreeze proteins, this book represents a unique, comprehensive work and a must-have for students and scientists in biochemistry, evolution, physiology and physical chemistry.
    Type of Medium: Online Resource
    Pages: XIV, 313 p. 33 illus., 28 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030419295
    DDC: 572.6
    Language: English
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  • 3
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Cancer. ; Immunology. ; Cancer Biology. ; Immunology.
    Description / Table of Contents: 1. The role of targeted therapy in multiple myeloma -- 2. Lenalidomide -- 3. Pomalidomide -- 4. Mechanisms driving resistance to proteasome inhibitors bortezomib, carfilzomib and ixazomib in multiple myeloma -- 5. Daratumumab -- 6. Elotuzumab -- 7. Histone deacetylase inhibitors -- 8. Bone targeted therapies -- 9. New targeted therapies for multiple myeloma under clinical investigation.
    Abstract: Multiple Myeloma remains an incurable malignancy. As the disease progresses, it invariably becomes resistant to treatment and almost all patients develop refractory disease. There are multiple different types of targeted therapies and many of them are used in combination at different stages of disease. Targeted therapies that are approved to be used include Proteasome Inhibitors, Immunomodulatory Drugs and Monoclonal Antibodies. Second and third generations of these drugs are developed to overcome resistance and they have unique mechanism of actions. Targeted therapies that are undergoing clinical trials include CAR-T cells, bi-specific antibodies, vaccines, ubiquitin ligase inhibitors and BCL-2 inhibitors. This book will help to develop an understanding of targeted therapies in Multiple Myeloma. Its goal is to provide a unique review of the mechanism of action and resistance of the many targeted therapies in Multiple Myeloma by leaders of the field. The book will be useful for students in medical science, clinicians, health professionals, scientists, pharmaceutical professionals, drug developers, and policy makers. This book will provide an insightful knowledge of the biology of Multiple Myeloma, the mechanism of action and resistance of targeted therapies, application of biomarkers and genomics and possible strategies in overcoming resistance and future development.
    Type of Medium: Online Resource
    Pages: XVII, 154 p. 5 illus. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030734404
    Series Statement: Resistance to Targeted Anti-Cancer Therapeutics, 22
    DDC: 571.978
    Language: English
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  • 4
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Cancer. ; Cell death. ; Cancer Biology. ; Cell Death.
    Description / Table of Contents: Preface -- Introduction -- The intersection of anoikis resistance and fatty acid metabolism in cancer -- Anoikis resistance in melanoma -- Anoikis mediated by stress-activated MAPK signaling pathways -- Metabolic Regulation of Anoikis -- Metabolic Reprogramming contributes to Anoikis resistance in Cancer Cells -- Role of the nuclear receptors in anoikis -- The roles of anoikis in cervical cancer -- Shc and the control of small GTPase dynamics in cellular anchorage -- Anoikis and the Human Gut Epithelium in Health and Disease -- Epithelial cell extrusion: the prelude to anoikis -- Microtubule modifications and mitochondria: role in anoikis.
    Abstract: This book provides a useful resource for graduate-level cancer cell biology courses. Since the first report, in 1994, of “anoikis”—the apoptosis that occurs when cells lack appropriate contact with the extracellular matrix—over 2,100 papers have been published on this subject. This book is the first comprehensive, in-depth and up-to-date compendium on anoikis. Chapters are authored by some of the leading researchers in the field. This book provides both mechanistic and translational information regarding anoikis, in a convenient format. Mechanistically, the following topics will be addressed in detail: The role of MAP kinase signaling The role of Shc proteins as cellular anchorage sensors The role of cellular metabolism, and fatty acid metabolism in particular, and how they are affected by oncogenic transformation How epithelial cell extrusion – the prelude to anoikis—is regulated in normal and cancer cells The convergence of TGF-b and androgen receptor signaling in the regulation of anoikis This book also discusses the specialized functions and dysregulation of anoikis in the following cancer settings: Colon cancer Melanoma Cervical cancer The book serves to update i nvestigators actively working on problems in the anoikis field, in either experimental or translational settings. For investigators encountering novel biological phenomena that might relate to anoikis, it serve as an entry point to the literature that does not require an extensive background in cell adhesion signaling or apoptosis mechanisms. .
    Type of Medium: Online Resource
    Pages: VIII, 202 p. 6 illus. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030738563
    DDC: 571.978
    Language: English
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  • 5
    Keywords: Proteins . ; Biotechnology. ; Biophysics. ; Protein Biochemistry. ; Biotechnology. ; Biophysics.
    Description / Table of Contents: Contents of volume 2 Antifreeze proteins: Biochemistry, molecular biology and applications -- Characteristics of antifreeze proteins -- Physicochemical properties of antifreeze proteins -- Structure-function of IBPs and their interactions with ice -- Interaction of antifreeze protein with water -- Thermal hysteresis -- Inhibition of recrystallization -- Other protective measures of antifreeze proteins -- Measuring antifreeze protein activity -- Antifreeze proteins in foods -- Cell, tissue and organ preservation with insect-derived antifreeze peptides -- Antifreeze proteins and gas hydrate inhibition -- Antifreeze protein-covered surfaces -- Mutational studies on antifreeze proteins -- Summary and future directions.
    Abstract: This second volume, written in four parts, offers the reader a thorough review on molecular, structural and applied aspects of antifreeze proteins. The first part treats the structure-function relationship and the physicochemical properties of antifreeze proteins; the second part provides insight into molecular mechanisms affected by antifreeze proteins; the third part presents some of the potential applications in various professional sectors and in the last part the book content is summarized and future research directions and ideas are discussed. Together with the first volume on the environment, systematic and evolution of antifreeze proteins, this book represents a unique, comprehensive work and a must-have for students and scientists in biochemistry, molecular biology, biotechnology and physical chemistry.
    Type of Medium: Online Resource
    Pages: XIV, 362 p. 98 illus., 60 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030419486
    DDC: 572.6
    Language: English
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  • 6
    Keywords: Food Microbiology. ; Food science. ; Veterinary microbiology. ; Agriculture. ; Industrial microbiology. ; Food Microbiology. ; Food Science. ; Veterinary Microbiology. ; Agriculture. ; Industrial Microbiology.
    Description / Table of Contents: First edition: I. Overview of Direct-Fed Microbials and Prebiotics and Their Interactions with the Host -- 1. The Commensal Microbiota -- 2. Prebiotics of Plant and Microbial Origin -- 3. Microbial Species Characteristics and Selection -- 4. Genomics of Probiotic-Host Interactions -- 5. The Effects of Pre- and Probiotics on the Host Immune Response -- II. Current and Future Status of Practical Applications and Challenges -- 6. Current Status of Practical Applications: Pets -- 7. Current Perspectives on Probiotics in Poultry Preharvest Food Safety -- 8. Current Status of Practical Applications: Probiotics in Dairy Cattle -- 9. Current Future Status of Practical Applications: Beef Cattle -- 10. Future Challenges of Administration of Direct-Fed Microbial Supplementation to Swine -- 11. Characteristics and Modification of the Intestinal Tract Microbiota of Channel Catfish Ictalurus punctatus -- 12. The Use of Direct-Fed Microbials as a Pre-Harvest Food Safety Intervention in Cattle. Second edition with proposed changes in attachment.
    Abstract: In this exciting update, readers will learn how feeding direct-fed microbials (including eubiotics, postbiotics, prebiotics, and synbiotics) is becoming increasingly widespread during food animal production. Animal production must improve efficiency of growth, and the use of direct-fed microbial and prebiotic additives to domestic animals has become widely accepted and utilized. The benefits of probiotic-type approaches in cattle, pigs, fish, and poultry, include improved general animal health, reduced foodborne pathogen populations, increased growth rate and feed efficiency, improved milk and egg production, and have been reported world-wide. Successes from probiotic approaches in multiple species have ensured their adoption; however, several fundamental questions remain. Early establishment and retention of an ecological balance in the gastrointestinal tract is an important first step for an external biological additive to be effective in young animals, suggesting that some of the benefits of direct-fed microbials may be due to an early establishment of a “normal” native gut microbial population. Research has indicated that the establishment of a normal population can enhance gut epithelial integrity, preventing inflammation and improving animal health. Thus, it is important that we understand the key processes that occur during the establishment of the gut microbial population that can impact gastrointestinal fermentation and provide protection against pathogens of the animals and of human consumers. Knowing how these processes work and how they impact animal energy and protein expenditures can guide further improvements of available and future commercial products. Exciting research opportunities are discussed in this book, examining different characteristics of DFMs that are fed to animals to meet different production demands in different production scenarios (e.g., beef versus dairy versus swine versus fin fish). The advent of molecular and next-generation sequencing offers methods of developing tailored DFMs, and of early detection of successful DFM establishment in the gut. These techniques will further deepen our insight into understanding the microbial population of the gut and how these populations impact animal health, food safety, and sustainability of animal-derived protein production.
    Type of Medium: Online Resource
    Pages: XIV, 348 p. 16 illus., 13 illus. in color. , online resource.
    Edition: 2nd ed. 2023.
    ISBN: 9783031405129
    DDC: 664.001579
    Language: English
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  • 7
    Keywords: Water. ; Hydrology. ; Freshwater ecology. ; Marine ecology. ; Environmental chemistry. ; Environmental management. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Water. ; Freshwater and Marine Ecology. ; Environmental Chemistry. ; Environmental Management. ; Environmental Engineering/Biotechnology.
    Description / Table of Contents: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index.
    Abstract: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production.
    Type of Medium: Online Resource
    Pages: XIV, 611 p. 152 illus., 110 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030116057
    DDC: 551.48
    Language: English
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  • 8
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Geographic information systems. ; Literacy. ; Graph theory. ; Geographical Information System. ; Literacy. ; Graph Theory.
    Abstract: This book provides two conceptual frameworks for further investigation of map literacy and fills in a gap in map literacy studies, addressing the distinction between reference maps and thematic maps and the varying uses of quantitative map literacy (QML) within and between the two. The text offers two conceptual frameworks and uses specific map examples to explore this variability in map reading skills and knowledge, with the goal of informing educational pedagogy and practices within geography and related disciplines. The book will appeal to cartographers and geographers as a new perspective on a tool of communication they have long employed in their disciplines, and will also appeal to those involved in the educational pedagogy of information and data literacy as a way to conceptualize the development of curricula and teaching materials in the increasingly important arena of the interplay between quantitative data and map-based graphics. The first framework discussed is based on a three-set Venn model, and addresses the content and relationships of three “literacies” – map literacy, quantitative literacy and background information. As part of this framework, the field of QML is introduced, conceptualized, and defined as the knowledge (concepts, skills and facts) required to accurately read, use, interpret and understand the quantitative information embedded in geographic backgrounds. The second framework is of a compositional triangle based on (1) the ratio of reference to thematic map purpose and (2) the level of generalization and/or distortion within maps. In combination, these two parameters allow for any type of map to be located within the triangle as a prelude to considering the type and level of quantitative literacy that comes into play during map reading. Based on the two frameworks mentioned above, the pedagogical tool of “word problems” is applied to “map literacy” in an innovative way to explore the variability of map reading skills and knowledge based on specific map examples.
    Type of Medium: Online Resource
    Pages: X, 126 p. 43 illus. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030685942
    Series Statement: SpringerBriefs in Geography,
    DDC: 910.285
    Language: English
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  • 9
    Keywords: Water. ; Hydrology. ; Freshwater ecology. ; Marine ecology. ; Environmental chemistry. ; Environmental management. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Water. ; Freshwater and Marine Ecology. ; Environmental Chemistry. ; Environmental Management. ; Environmental Engineering/Biotechnology.
    Description / Table of Contents: Section I Overview -- 1 Introduction to the volume -- 2 Deep-water oil and gas production in the Gulf of Mexico, and related global trends -- 3 Spilled oil composition and the natural carbon cycle: The true drivers of environmental fate and effects of oil spills -- Section II Geological, Chemical, Ecological and Physical Oceanographic Settings and Baselines for Deep Oil Spills in the Gulf of Mexico -- 4 An overview of the geologic origins of hydrocarbons and production trends in the Gulf of Mexico -- 5 Gulf of Mexico (GoM) bottom sediments and depositional processes: A baseline for future oil spills -- 6 Benthic faunal baselines in the Gulf of Mexico: A precursor to evaluate future impacts -- 7 Linking abiotic variables with macrofaunal and meiofaunal abundance and community -- 8 The asphalt ecosystem of the southern Gulf of Mexico: abyssal habitats across space and time -- 9 Geochemical and faunal characterization in the sediments off the Cuban north and northwest coast -- 10 Mapping isotopic and dissolved organic matter baselines in waters and sediments of Gulf of Mexico -- 11 Toward a predictive understanding of the benthic microbial community response to oiling on the northern Gulf of Mexico coast -- 12 Combining isoscapes with tissue-specific isotope records to re-create the geographic histories of fish -- 13 The utility of stable and radio isotopes in fish tissues as biogeochemical tracers of marine oil spill food web effects -- 14 Modernizing protocols for aquatic toxicity testing of oil and dispersant -- 15 Polycyclic aromatic hydrocarbon baselines in Gulf of Mexico fishes -- 16 Case Study: Using a combined laboratory, field, and modeling approach to assess oil spill impacts -- Section III Simulations of Future Deep Spills -- 17 Testing the effect of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events in benthic microcosms -- 18 Physical processes influencing the sedimentation and lateral transport of MOSSFA in the NE Gulf of Mexico -- 19 Simulating deep oil spills beyond the Gulf of Mexico -- Section IV Comparisons of likely impacts from simulated spills -- 20 Comparison of the spatial extent, impacts to shorelines, and ecosystem and 4-dimensional characteristics of simulated oil spills -- 21 A predictive strategy for mapping locations where future MOSSFA events are expected -- 22 Connectivity of Gulf of Mexico continental shelf fish populations and implications of simulated oil spills -- 23 Evaluating the effectiveness of fishery closures for deep oil spills using a 4-dimensional model -- 24 As Gulf oil extraction goes deeper, who is at risk? Community structure, distribution, and connectivity of the deep-pelagic fauna -- 25 Evaluating impacts of deep oil spills on oceanic marine mammals -- 26 Comparative environmental sensitivity of offshore Gulf of Mexico waters potentially impacted by ultra-deep oil well blowouts -- Section V Preparing for and Responding to the Next Deepwater Spill -- 27 Preparing for the inevitable: ecological and indigenous community impacts of oil spill-related mortality in the United States Arctic marine ecosystem -- 28 Summary of contemporary research on use of chemical dispersants for deep sea oil spills -- 29 Perspectives on research, technology, policy and human resources for improved management of ultra-deep oil and gas resources and responses to oil spills -- Index.
    Abstract: It has often been said that generals prepare for the next war by re-fighting the last. The Deepwater Horizon (DWH) oil spill was unlike any previous – an underwater well blowout 1,500 meters deep. Much has been learned in the wake of DWH and these lessons should in turn be applied to both similar oil spill scenarios and those arising from “frontier” explorations by the marine oil industry. The next deep oil well blowout may be at 3,000 meters or even deeper. This volume summarizes regional (Gulf of Mexico) and global megatrends in marine oil exploration and production. Research in a number of key areas including the behavior of oil and gas under extreme pressure, impacts on biological resources of the deep sea, and the fate of oil and gas released in spills is synthesized. A number of deep oil spills are simulated with detailed computer models, and the likely effects of the spills and potential mitigation measures used to combat them are compared. Recommended changes in policies governing marine oil exploration and development are proposed, as well as additional research to close critical and emerging knowledge gaps. This volume synthesizes state-of-the-art research in deep oil spill behavior and response. It is thus relevant for government and industry oil spill responders, policy formulators and implementers, and academics and students desiring an in-depth and balanced overview of key issues and uncertainties surrounding the quest for deep oil and potential impacts on the environment.
    Type of Medium: Online Resource
    Pages: XII, 542 p. 167 illus., 138 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030129637
    DDC: 551.48
    Language: English
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  • 10
    Keywords: Soil science. ; Physical geography. ; Geomorphology. ; Ecology . ; Soil Science. ; Physical Geography. ; Geomorphology. ; Ecology.
    Description / Table of Contents: Introduction -- History of Soil Studies -- Soil-Forming Factor -- Elevation Gradients in the Oregon Mountain Ranges -- General Soil Regions of Oregon -- Diagnostic Horizons and Taxonomic Structure of Oregon Soils -- Taxonomic Soil Regions -- Mollisols -- Inceptisols -- Aridisols -- Andisols -- Ultisols -- Alfisols -- Entisols, Vertisols, Spodosols, and Histosols -- Soil-Forming Processes -- Benchmark, Endemic, Rare, and Endangered Soils -- Land Use in Oregon -- Yields, Soil Conservation, and Production System -- Summary.
    Abstract: This book is the only comprehensive summary of natural resources of Oregon and adds to World Soil Book Series state-level collection. Due to broad latitudinal and elevation differences, Oregon has an exceptionally diverse climate, which exerts a major influence on soil formation. The mean annual temperature in Oregon ranges from 0°C in the Wallowa and Blue Mountains of northeastern Oregon to 13°C in south-central Oregon. The mean annual precipitation ranges from 175 mm in southeastern Oregon to over 5,000 mm at higher elevations in the Coast Range. The dominant vegetation type in Oregon is temperate shrublands, followed by forests dominated by lodgepole pine, Douglas-fir, and mixed conifers, grasslands, subalpine forests, maritime Sitka spruce-western hemlock forests, and ponderosa pine-dominated forests. Oregon is divided into 17 Major Land Resource Areas, the largest of which include the Malheur High Plateau, the Cascade Mountains, the Blue Mountain Foothills, and Blue Mountains. The single most important geologic event in Oregon was the deposition of Mazama ash 7,700 years by the explosion of Mt. Mazama. Oregon has soil series representative of 10 orders, 40 suborders, 114 great groups, 389 subgroups, over 1,000 families, and over 1,700 soil series. Mollisols are the dominant order in Oregon, followed by Aridisols, Inceptisols, Andisols, Ultisols, and Alfisols. Soils in Oregon are used primarily for forest products, livestock grazing, agricultural crops, and wildlife management. Key land use issues in Oregon are climate change; wetland loss; flooding; landslides; volcanoes, earthquakes, and tsunamis; coastal erosion; and wildfires.
    Type of Medium: Online Resource
    Pages: XIX, 545 p. 229 illus., 197 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030900915
    Series Statement: World Soils Book Series,
    DDC: 631.4
    Language: English
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