Advances in Soil Science | Buch | 978-1-4612-7812-2 | sack.de

Buch, Englisch, Band 16, 240 Seiten, Paperback, Format (B × H): 155 mm x 235 mm, Gewicht: 394 g

Reihe: Advances in Soil Science

Advances in Soil Science

Volume 16
Softcover Nachdruck of the original 1. Auflage 1991
ISBN: 978-1-4612-7812-2
Verlag: Springer

Volume 16

Buch, Englisch, Band 16, 240 Seiten, Paperback, Format (B × H): 155 mm x 235 mm, Gewicht: 394 g

Reihe: Advances in Soil Science

ISBN: 978-1-4612-7812-2
Verlag: Springer


The International Society ofSoil Science was organized in 1924 and the 1st International Congress ofthe Society was held in Washington, D. C., United States ofAmerica, in 1927. The 14th Congress was held August 12-18, 1990 in Kyoto, Japan. Dr. Akira Tanaka, Society President, stated "It is a serious concernofpeopleintheworldtosustainhighfarming productivityfor feeding the ever growing population,and also to protect the environment for human habitation. For this purpose, it is necessary to maximize crop yield per unit field areathroughintensivemanagementofthesoilandcropsonlands which are best suited for crop production, and to leave lands which are suboptimal for crops under natural conditions insofar as possible. Soil science is respon­ siblefor planningtheoptimumland-usesystem,for managing soilsand crops with maximum efficiency, and for fighting intelligently against soil deteriora­ tion. " Dr. Tanaka clearly stated the challenges facing soil scientists, and they are indeed challenges. Even though the rate ofworld population growth has decreased somewhat in recent years, the consensus is that total population willdouble-to some ten billion-beforeit stabilizes. The increased produc­ tion of food, fiber, and fuelwood necessary for the people will require a continued supply ofnew technologies and management practices. The consensus of many scientists is that the greatest challenge is not increasing production, but preventing serious deterioration of the soil and waterresource base so theproductionlevel can be sustained. Therearemany historical examples where civilizations were successful for extended periods onlytoseesoildegradationleadtotheircollapse.

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Chemistry of Phosphorus Transformations in Soil.- I. Introduction.- II. Physicochemical Processes Governing Phosphorus Concentration in Soil Solution.- III. Reactions of Phosphorus Fertilizers in Soil.- IV. Chemistry of Phosphorus Transformations in Submerged Soil.- V. Soil Organic Phosphorus.- VI. Phosphorus Management Options.- VII. Unresolved Challenges.- References.- Equilibrium-Based Modeling of Chemical Sorption on Soils and Soil Constituents.- I. Introduction.- II. Selection of Solid and Aqueous Phase Components for Validating a Proposed Model.- III. In Search of a Model: The Tools for Soil Chemists.- IV. Use of Equilibrium-Based Models in Combination with Other Approaches for Modeling Sorption Reactions.- References.- Determination of Nutrient Availability and Elemental Toxicity by AB-DTPA Soil Test and ICPS.- I. Introduction.- II.Theoretical Principles of the Ammonium Bicarbonate-DTPA (AB-DTPA) Soil Test.- III.Theoretical Principles of Inductively Coupled Plasma Optical Emission Spectrometry (ICPS).- IV.Elements Extracted with Ammonium Bicarbonate-DTPA.- V. Analysis of Ammonium Bicarbonate-DTPA Extracts Using Inductively Coupled Plasma Spectometry.- VI. Interpretation of Results.- VII. Conclusions.- References.- Effects of Sewage Sludge Application on Soil Microbial Processes and Soil Fertility.- I. Introduction.- II. Effects of Sewage Sludge and Heavy Metals on Soil Microbial Processes.- III. Resistance of Soil Microorganisms to Elevated Heavy Metal Concentrations in Soil.- IV. Conclusions.- References.- Estimating Soil Water Retention from Soil Physical Properties and Characteristics.- I. Introduction.- II. Soil Physical Properties and Characteristics.- III. Approaches for Estimating Soil Water Retention from Soil Physical Properties and Characteristics.- IV.Water Retention Data Bases.- V. Conclusions.- References.



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