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  • 1
    Online Resource
    Online Resource
    Cham :Springer Nature Switzerland :
    Keywords: Soil science. ; Soil Science.
    Description / Table of Contents: Introduction -- History of Soil Studies -- Soil-Forming Factors -- General Soil Regions of Mississippi -- Diagnostic Horizons and Taxonomic Structure of Mississippi Soils -- Taxonomic Soil Regions -- Ultisols -- Alfisols -- Inceptisols -- Vertisols -- Entisols -- Histosols, Mollisols, and Spodosol.
    Abstract: This book capitalizes on data collected by the Natural Resources Conservation Service & other organizations over the past 100+ years & offers the first comprehensive treatment of Mississippi soils. Main topics include the history of soil studies; soil-forming factors; general soil regions; taxonomic soil regions; soil-forming processes; benchmark, endemic, rare, & endangered soils; land use; key environmental issues; & yield potential of Mississippi soils. The book contains over 100 photographs of soils, vegetation, & land use & should be of interest to planners & students interested in soil science & allied disciplines.
    Type of Medium: Online Resource
    Pages: XIX, 209 p. 117 illus., 103 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031362354
    Series Statement: World Soils Book Series,
    DDC: 631.4
    Language: English
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  • 2
    Keywords: Soil science. ; Geomorphology. ; Sedimentology. ; Physical geography. ; Biodiversity. ; Soil Science. ; Geomorphology. ; Sedimentology. ; Physical Geography. ; Biodiversity.
    Description / Table of Contents: Overview -- History of Soil Studies in Nevada -- Soil-Forming Factors -- General Soil Regions of Nevada -- Soil Geomorphology of Nevada -- Diagnostic Horizons and Taxonomic Structure of Nevada Soils -- Taxonomic Soil Regions of Nevada -- Aridisols -- Mollisols -- Entisols -- Inceptisols -- Alfisols, Vertisols, and Andisols -- Soil-Forming Processes in Nevada -- Benchmark, Endemic, Rare, and Endangered Soils in Nevada.-Land Use in Nevada -- Conclusions.
    Abstract: This book discusses Nevada in the context of the history of soil investigations; soil-forming factors; general soil regions; soil geomorphology; taxonomic structure of the soils; taxonomic soil regions; soil-forming processes; benchmark, endemic, rare, and endangered soils; and use of soils. With an average mean annual precipitation of 175 mm (7 in), Nevada is the driest state in the USA. More than three-quarters (89%) of the state has been mapped and the first soil survey was completed in 1909. Nevada is divided into 10 major land-resource areas and features two large deserts (the Great Basin Desert and the Mojave Desert), and over 100 north–south trending enclosed basins separated by mountain ranges (Basin and Range Province), several of which have peaks exceeding 3,400 m. Further, the soils of Nevada represent seven of the 12 globally recognized orders, 29 suborders, 69 great groups, and over 1,800 soil series, and some of the classic research on the origin of duripans and petrocalcic horizons was conducted in the state. This book presents the first report on the soils of Nevada and provides the first soil map of Nevada utilizing soil.
    Type of Medium: Online Resource
    Pages: XV, 301 p. 104 illus., 84 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030531577
    Series Statement: World Soils Book Series,
    DDC: 631.4
    Language: English
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  • 3
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Soil science. ; Geography. ; Soil Science. ; Regional Geography.
    Description / Table of Contents: 1. Introduction to the Great Lakes Coastal Zone -- 2. Soil-forming Factors of the Great Lakes Coastal Zone -- 3. Soil Taxonomic Systems Used in the Great Lakes Coastal Zone -- 4. Taxonomic Structure of the Soils of the Great Lakes Coastal Zone -- 5. Soils of the Great Lakes Coastal Zone -- 6. Soils of the Lake Superior Coastal Zone -- 7. Soils of the Lake Michigan Coastal Zone -- 8. Soils of the Lake Huron Coastal Zone -- 9. Soils of the Lake Erie Coastal Zone -- 10. Soils of the Lake Ontario Coastal Zone -- 11. Soil-forming Processes of the Great Lakes Coastal Zone -- 12. Pedodiversity of the Great Lakes Coastal Zone -- 13. Importance and Protection of Soils of the Great Lakes Coastal Zone -- 14. Unusual Relict Features in the Great Lakes Coastal Zone -- 15. Conclusions -- Methodology -- References -- Appendices -- A. Classification of soil series -- B. Soil-forming factors and lake occurrence for soil series of the Great Lakes Coastal Zone -- C. Benchmark, endemic, rare, and endangered soil series of the Great Lakes Coastal Zone -- D. Glossary.
    Abstract: This book introduces the reader to the Great Lakes and considers their soil-forming factors and processes, taxonomic structure of the soils, soil geography and pedodiversity, while also addressing the importance and protection of soils in the Great Lakes Coastal Zone. The Great Lakes are an important part of the USA and Canada. Home to 33 million people, including 90% of all Canadians, the Great Lakes account for 20% of the world’s surface freshwater and 90% of the USA’s freshwater. Key industries include shipping, steel and automobile production, energy generation, fishing, pulp and papermaking, agriculture, and recreation. To date, there has been no comprehensive inventory of the region’s soils, which are now subject to dramatic climate change and environmental degradation. This book was prepared using the US Department of Agriculture, Natural Resources Conservation Service databases, including the Web Soil Survey, Soil Series Extent Explorer, soil classification and characterization databases, and county soil surveys, supplemented by shoreline viewer software, the author’s independent research, consultation with colleagues, and survey trips around the Great Lakes. .
    Type of Medium: Online Resource
    Pages: XVII, 227 p. 143 illus., 101 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030524258
    DDC: 631.4
    Language: English
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  • 4
    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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  • 5
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] The dry valleys of Antarctica are some of the oldest terrestrial surfaces on the Earth. Despite much study of soil weathering and development, ecosystem dynamics and the occurrence of life in these extreme environments, the reasons behind the exceptionally high salt content of the ...
    Type of Medium: Electronic Resource
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  • 6
    Electronic Resource
    Electronic Resource
    Oxford, UK : Blackwell Science Ltd
    Global change biology 10 (2004), S. 0 
    ISSN: 1365-2486
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Biology , Energy, Environment Protection, Nuclear Power Engineering , Geography
    Notes: Litter decay dynamics of paper birch (Betula papyrifera) were assessed at the Aspen free-air CO2 enrichment (FACE) facility in northern Wisconsin, USA. Leaf litter was decomposed for 12 months under factorial combinations of 360 vs. 560 μL CO2 L−1, crossed with 36 vs. 55 nL O3 L−1. To differentiate between substrate quality and environment effects, litterbags were placed in their Native Plots of origin or transplanted into the other treatments. CO2 enrichment, regardless of O3 concentration, produced poorer quality litter (high C/N, lignin/N and condensed tannins) than did ambient CO2 (low C/N, lignin/N and condensed tannins). Substrate quality differences were reflected in the mass loss rates (k-values), which were high for litter generated under ambient CO2 (0.887 year−1) and low for litter generated under elevated CO2 (0.674 year−1). The rate-retarding effects of CO2 enrichment were neither alleviated nor exacerbated by O3 exposure. Decay rates varied, however, depending on whether litter was placed back into its plot of origin or transplanted to Common Gardens. The results of this study are species specific, but they have important implications for understanding the processes regulating storage of fixed C and the release of CO2 from northern forest ecosystems.
    Type of Medium: Electronic Resource
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  • 7
    Publication Date: 2013-09-01
    Print ISSN: 0361-5995
    Electronic ISSN: 1435-0661
    Topics: Geosciences , Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Published by Wiley
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  • 8
    Publication Date: 1995-01-01
    Print ISSN: 1045-6740
    Electronic ISSN: 1099-1530
    Topics: Geography , Geosciences
    Published by Wiley
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  • 9
  • 10
    Publication Date: 2014-11-01
    Print ISSN: 1523-0430
    Electronic ISSN: 1938-4246
    Topics: Geography , Geosciences
    Published by Taylor & Francis
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