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The Natural Environment and the Biogeochemical Cycles (Paperback, Softcover reprint of the original 1st ed. 1980): P.J. Craig,... The Natural Environment and the Biogeochemical Cycles (Paperback, Softcover reprint of the original 1st ed. 1980)
P.J. Craig, J. Emsley, D J Faulkner, P.M. Huang, E.A. Paul, …
R2,964 Discovery Miles 29 640 Ships in 10 - 15 working days

Environmental Chemistry is a relatively young science. Interest in this subject, however, is growing very rapidly and, although no agreement has been reached as yet about the exact content and limits of this interdisciplinary discipline, there appears to be increasing interest in seeing environmental topics which are based on chemistry embodied in this subject. One of the first objectives of Environmental Chemistry must be the study of the environment and of natural chemical processes which occur in the environment. A major purpose ofthis series on Environmental Chemistry, therefore, is to present a reasonably uniform view of various aspects of the chemistry of the environ ment and chemical reactions occurring in the environment. The industrial activities of man have given a new dimension to Environ mental Chemistry. We have now synthesized and described over 'five million chemical compounds and chemical industry produces about hundred and fifty million tons of synthetic chemicals annually. We ship billions of tons of oil per year and through mining operations and other geophysical modifications, large quantities of inorganic and organic materials are released from their natural deposits. Cities and metropolitan areas ofup to 15 million inhabitants produce large quantities ofwaste in relatively small and confined areas. Much of the chemical products and waste products of modern society are released into the environment either during production, storage, transport, use or ultimate disposal. These released materials participate in natural cycles and reactions and frequently lead to interference and disturbance of natural systems.

Chemistry of the Solid Water Interface - Processes  at the Mineral-Water and Particle-Water Interface  in Natural Systems... Chemistry of the Solid Water Interface - Processes at the Mineral-Water and Particle-Water Interface in Natural Systems (Paperback, New)
W Stumm
R4,316 Discovery Miles 43 160 Ships in 12 - 17 working days

Provides an introduction to the chemistry of the solid-water interface, progressing from the simple to more complex and applied. Discusses the important interfaces in natural systems, especially geochemistry, in natural waters, soils and sediments. The processes occurring at mineral-water, particle-water and organism-water interfaces play critical roles in regulating the composition and ecology of oceans and fresh waters, the development of soils and plant nutrient's supply, preserving the integrity of water repositories and in such applications as water technology and corrosion science.

Aquatic Chemistry - Chemical Equilibria and Rates in Natural Waters 3e (Paperback, Reissued 3rd Ed): W Stumm Aquatic Chemistry - Chemical Equilibria and Rates in Natural Waters 3e (Paperback, Reissued 3rd Ed)
W Stumm
R3,894 Discovery Miles 38 940 Ships in 12 - 17 working days

The authoritative introduction to natural water chemistry THIRD EDITION

Now in its updated and expanded Third Edition, Aquatic Chemistry remains the classic resource on the essential concepts of natural water chemistry. Designed for both self-study and classroom use, this book builds a solid foundation in the general principles of natural water chemistry and then proceeds to a thorough treatment of more advanced topics. Key principles are illustrated with a wide range of quantitative models, examples, and problem-solving methods.

Major subjects covered include:

  • Chemical Thermodynamics
  • Solid-Solution Interface and Kinetics
  • Trace Metals
  • Acids and Bases
  • Kinetics of Redox Processes
  • Dissolved Carbon Dioxide
  • Photochemical Processes
  • Atmosphere-Water Interactions
  • Kinetics at the Solid-Water
  • Metal Ions in Aqueous Solution Interface
  • Precipitation and Dissolution
  • Particle-Particle Interaction
  • Oxidation and Reduction
  • Regulation of the Chemical
  • Equilibria and Microbial Mediation Composition of Natural Waters
Aquatic Chemical Kinetics - Reaction Rates of Processes in Natural Waters (Hardcover): W Stumm Aquatic Chemical Kinetics - Reaction Rates of Processes in Natural Waters (Hardcover)
W Stumm
R7,997 Discovery Miles 79 970 Ships in 12 - 17 working days

Aquatic Chemistry An Introduction Emphasizing Chemical Equilibria in Natural Waters Second Edition Edited by Werner Stumm and James J. Morgan This second edition of the renowned classic unites concepts, applications, and techniques with the growing amounts of data in the field. Expanded treatment is offered on steady-state and dynamic models employing mass-balance approaches and kinetic information. New chapters address such topics as: environmental aspects of aquatic chemistry; new material on organic compounds in natural water systems; the use of stable and radioactive isotopes in chemical and physical processes; the latest advances in marine chemistry; solid-solution interface; kinetic considerations of equilibria; metal-ligand interactions; and an expanded compilation of thermodynamic data for important reactions in natural water systems. 1981 (0 471-04831-3) Cloth 780 pp. (0 471-09173-1) Paper Chemical Processes in Lakes Edited by Werner Stumm This is a multidisciplinary analysis of recent research on the physical, chemical, and biological processes in aquatic systems. Coverage includes: distribution of elements and compounds in water and sediments; sedimentation and sediment accumulation of nutrients and pollutants; eurtophication and acidification; atmospheric deposition; redox-related geochemistry and sediment-water exchange of nutrients and metals; sediment dating and paleolimnology; and steady-state and dynamic models. Most chapters focus on the role of biological processes and the coupling of elemental cycles by organisms. 1985 (0 471-88261-5) 435 pp. Principles of Aquatic Chemistry Francois M. M. Morel Here is a quantitative treatment of the chemical principles that govern the composition of natural waters. Features include an in-depth examination of the use of conservation principles in chemical systems, a review of thermodynamic and kinetic principles applicable to aquatic systems, and a novel presentation of a systematic methodology for equilibrium calculations. Detailed coverage is provided on the topic of aquatic chemistry, following the traditional divisions of acid-base, precipitation-dissolution, coordination, redox and surface reactions. 1983 (0 471-08683-5) 446 pp.

Aquatic Surface Chemistry - Chemical Processes at the Particle-Water Interface (Hardcover): W Stumm Aquatic Surface Chemistry - Chemical Processes at the Particle-Water Interface (Hardcover)
W Stumm
R8,483 Discovery Miles 84 830 Ships in 10 - 15 working days

This comprehensive contributed volume presents an account of current research and applications of chemical processes occurring at the interfaces of water with naturally occurring solids. Interactions of solutes with the solid surfaces are looked at from a mechanistic and dynamic point of view rather than a descriptive one. Processes discussed and concepts presented are applicable to all natural waters (oceans and fresh waters as well as soil and sediment water systems) and to the surfaces of natural solids such as minerals, soils, sediments, biota, and humus. Chapters progress from theoretical models and laboratory studies to applications in natural water, soil, and geochemical systems, emphasizing those processes that regulate the distribution and concentration of elements and compounds. Topics covered include adsorption mechanisms in aquatic surface chemistry, the electric double layer at the solid-solution interface, aspects of molecular structure in surface complexes: spectroscopic investigations, interpretation of metal complexation by heterogeneous complexants, the role of colloids in the partitioning of solutes in natural waters, and from molecules to planetary environments and understanding global change.

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