Chesworth | Encyclopedia of Soil Science [With Ereference Online Access] | Buch | 978-1-4020-5127-2 | sack.de

Buch, Englisch, 902 Seiten, OTHER, Format (B × H): 210 mm x 280 mm

Reihe: Encyclopedia of Earth Sciences

Chesworth

Encyclopedia of Soil Science [With Ereference Online Access]

Buch, Englisch, 902 Seiten, OTHER, Format (B × H): 210 mm x 280 mm

Reihe: Encyclopedia of Earth Sciences

ISBN: 978-1-4020-5127-2
Verlag: Springer


The Encyclopedia of Soil Science provides a comprehensive, alphabetical treatment of basic soil science in a single volume. It constitutes a wide ranging and authorative collection of some 160 academic articles covering the salient aspects of soil physics, chemistry, biology, fertility, technology, genesis, morphology, classification and geomorphology. With increased usage of soil for world food production, building materials, and waste repositories, demand has grown for a better global understanding of soil and its processes. longer articles by leading authorities from around the world are supplemented by some 430 definitions of common terms in soil sciences.
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Excluding the ca. 430 glossary terms: Acid Deposition.- Acid Rock Drainage.- Acid Soils.- Acid Sulfate Soils.- Acidity.- Acrisols.- Activity Ratio.- Aggregate Stability.- Aggregation.- Agrogeology.- Agronomy.- Albeluvisols.- Alisols.- Algae.- Alkaline Soils.- Andosols.- Anthrosols.- Arenosols.- Applied Soil Geochemistry.- Base Saturation.- Biogeochemical Cycles.- Biospheric Role of Soil.- Buffers.- Bulk Density.- Calcareous Soils.- Calcisols.- Cambisols.- Capillary Pressure.- Carbon Cycle.- Carbon Sequestration.- Carbonates.- Chemical Analyses.- Chemical Composition.- Chernozems.- Chronology of Soils.- Classification of Soils: Basics.- Classification of Soils: FAO.- Classification of Soils: Soil Taxonomy.- Classification of Soils: World Reference Base.- Clay Mineral Decomposition.- Clay Mineral Formation.- Clay Mineral Structures.- Clay Minerals: Hydrous Oxides.- Clay Minerals: Non- & Para-Crystalline.- Clay Minerals: Silicates.- Clay-Organic Interactions.- Compaction.- Computer Modelling.- Computerized Tomogaphy.- Conductivity: Electrical.- Conductivity: Hydraulic.- Conductivity: Thermal.- Conservation.- Crusts.- Cryosols.- Denitrification.- Diffusion Processes.- Duricrust.- Durisols.- Earth Cycles.- Edaphic Constraints.- Edaphology.- Energy Balance.- Envelope-Pressure Potential.- Enzyme Activity.- Enzymes and Proteins.- Erosion.- Evaporation.- Farming by Soil.- Fauna.- Ferralsols.- Fertilizer Raw Materials.- Fertilizers: Inorganic.- Fertilizers: Organic.- Field pH.- Flocculation.- Flow Theory.- Forest Soils.- Geography of Soils.- Geochemistry in Soil Science.- Gleysols.- Gypsisols.- Heat Capacity.- Histosols.- Horizon Designations: FAO.- Humus.- Hydric Soils.- Hydrologic Cycle.- Hydrophility, Hydrophobicity.- Hygroscopicity, Hygroscopic Constant.- Imbibition.- Infiltration.- Ionic Activities.- Iron Oxides.- Irrigation.- Journals of Soil Science.- Kastanozems.- Kinetics of Solute Sorption.- Labile Pool.- Landscape and Soils.- Law of The Minimum.- Leptosols.- Lime, Liming.- Lixisols.- Luvisols.- Macronutrients.- Management of Soils.- Metal Complexing.- Microbial Ecology and Clay Minerals.- Microbiology.- Microhabitats.- Micrometeorology.- Micromorphology.- Micronutrients.- Microstructure Manipulation.- Mineral Analysis.- Mire.- Moisture Management.- Near Neutral Soils.- Neolithic Revolution.- Nitisols.- Nitrification.- Nitrogen Cycle.- Nitrogen Fixation.- Nutrient Cycling.- Nutrient Potential.- Organic Fertilizers.- Organic Matter.- Particle Density.- Particle Size Distribution.- Peat.- Pedology.- Pedogenesis.- Pedogenesis: Redox-pH Aspects.- Pedogenic Grid.- Pedoturbation.- Percolation.- Periodic Table.- Permeability.- Phase Rule.- Phaeozems.- Phosphorus Cycle.- Physical Chemistry.- Planosols.- Plant Nutrients.- Plant Roots.- Plinthosols.- Podzols.- Pollution.- Pore Size Distribution.- Pore Space, Drainable.- Pore-Size Distribution.- Profile: Physical Modification.- Puddling.- Radiocarbon Dating.- Radioisotopes.- Redox Chemistry of Soils.- Redox-pH Diagrams for Soils.- Regosols.- Rhizosphere.- Root Soil Interface.- Salt Affected Soils.- Saprolite.- Silicates.- Simulation of Soil Systems.- Sludge Disposal.- Soil.- Soil and Health Problems.- Soil Biology.- Soil Chemistry.- Soil Color.- Soil Conservation Service.- Soil Drainage.- Soil Engineering.- Soil Fertility.- Soil Forming Factors.- Soil Health.- Soil Mapping and Survey.- Soil Mechanics.- Soil Microbiology.- Soil Mineralogy.- Soil Physical Conditions.- Soil Physics.- Soil Pores.- Soil Quality.- Soil Reaction.- Soil Root Interface.- Soil Salinity and Salinization.- Soil Science.- Soil Science and Society.- Soil Solution.- Soil Stabilization.- Soil Variation.- Soil Water.- Soil Water Management.- Soils: Non Agricultural Uses.- Soils of Coastal Environments.- Soil-Solvent Interactions.- Soil-Water Management.- Solonchaks.- Solonetz.- Sorption Phenomena.- Sorption-Desorption Kinetics.- Surface Soil Water Content.- Sulfur Transformations and Fluxes.- Tests and Testing.- Thermal Regime.- Thermodynamics of Soil Water.- Thionic Soils.- Thixotropism.- Tillage.- Trace Elements.- Transport Processes.- Tropical Soils.- Umbrisols.- Ventifacts.- Vertisols.- Water Budget in Soil.- Water Content and Retention.- Water Erosion.- Water Fluxes.- Water Movement.- Weathering Systems.- Wetting Front.- Wind Erosion.- Zeta Potential.


Ward Chesworth is Professor Emeritus of Geochemistry at the University of Guelph, Ontario, Canada. He co-edited Weathering, Soils and Paleosols, and three volumes of the annual Hammond Lecture Series broadcast in part by the Canadian Broadcasting Corporation: Malthus and the Third Millennium, Sustainable Development, and The Human Ecological Footprint. He co-wrote Perspectives on Canadian Geology. In 2003 he received the Halbouty Prize of the Geological Society of America, of which he is a Fellow.

Professor Emeritus, University of Guelph (Selected GSA Fellow in 2005)
"Ward Chesworth's contributions are based on research as a geochemical petrologist focusing on soil petrology, defining conditions for sustainable agriculture through reducing stresses, demands, and abuses on Earth, including water, soil, and the environment. He has made major basic contributions to the application of geology for sustainable societies."


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