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Biological Treatment of Hazardous Wastes - ISBN 9780471048619

Biological Treatment of Hazardous Wastes

ISBN 9780471048619

Autor: Gordon A. Lewandowski, Louis J. DeFilippi

Wydawca: Wiley

Dostępność: 3-6 tygodni

Cena: 959,70 zł

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ISBN13:      

9780471048619

ISBN10:      

0471048615

Autor:      

Gordon A. Lewandowski, Louis J. DeFilippi

Oprawa:      

Hardback

Rok Wydania:      

1997-12-18

Ilość stron:      

416

Wymiary:      

240x162

Tematy:      

PN

Unlike most books on the subject, which offer only formulaic solutions to particular problems, Biological Treatment of Hazardous Wastes provides professionals with a conceptual framework within which to develop effective treatments tailored to any hazardous waste scenario they may encounter.
A complete guide to the biological treatment of a wide variety of hazardous waste problems–– for engineers, scientists, and technical personnel
Written by an author team comprising twenty–five North American and European experts, the text delineates the complex factors involved in the design of successful in situ and ex situ biotreatment approaches. Offering a balanced presentation of basic principles and engineering practices, it progresses from basic microbiological, biochemical, hydrogeological, and engineering principles to the development of design methodologies and specific hazardous waste scenarios––many of them based on the numerous case studies found throughout the book. Topics covered in detail include:
∗ Reactors, including suspended growth, fixed–film, membrane biofilm, and bioslurry reactors
∗ Anaerobic and aerobic systems
∗ Hydrogeologic and microbial factors associated with in situ biodegradation
∗ Biofiltration of VOC vapors
∗ Composting
∗ Natural attenuation

Spis treści:
Suspended–Biomass and Fixed–Film Reactors (P. Armenante).
Introduction to Microbiological Degradation of Aqueous Waste and Its Application Using a Fixed–Film Reactor (L. DeFilippi & F. Lupton).
Bioslurry Reactors (C. Christodoulatos & A. Koutsospyros).
Membrane Biofilm Reactors (P. Wilderer, et al.).
Biofiltration of VOC Vapors (B.Baltzis).
Impact of Biokinetics and Population Dynamics on Engineering Analysis of Biodegradation of Hazardous Wastes (B. Baltzis & G. Lewandowski).
Hydrogeologic Factors Affecting Biodegradation Processe s (K. Barr) Assessment of the Potential for Clogging and Its Mitigation During In–Situ Bioremediation (P. Jaffé & S. Taylor).
Design Considerations for In–Situ Remediation of Organic Contaminants (E. Bouwer, et al.).
Pentachlorophenol Biodegradation: Laboratory and Field Studies (C. Litchfield & M. Rao).
Natural Restoration of PCB–Contaminated Hudson River Sediments (F. Mondello, et al.).
Microbes in the Muck: A Look into the Anaerobic World (D. Kafkewitz & M. Togna).
Composting (J. Hogan).
Index.

Nota biograficzna:
GORDON A. LEWANDOWSKI, D Eng Sci, is Distinguished Professor and Chairperson of the Department of Chemical Engineering, Chemistry, and Environmental Science at the New Jersey Institute of Technology.
LOUIS J. DeFILIPPI, PhD, is an independent consultant with extensive industrial experience in environmental and biotechnology areas. He is based in Palatine, Illinois.

Okładka tylna:
Unlike most books on the subject, which offer only formulaic solutions to particular problems, Biological Treatment of Hazardous Wastes provides professionals with a conceptual framework within which to develop effective treatments tailored to any hazardous waste scenario they may encounter.
A complete guide to the biological treatment of a wide variety of hazardous waste problems–– for engineers, scientists, and technical personnel
Written by an author team comprising twenty–five North American and European experts, the text delineates the complex factors involved in the design of successful in situ and ex situ biotreatment approaches. Offering a balanced presentation of basic principles and engineering practices, it progresses from basic microbiological, biochemical, hydrogeological, and engineering principles to the development of design methodologies and specific hazardous waste scenarios––many of them based on the numerous case studies found th roughout the book. Topics covered in detail include:
∗ Reactors, including suspended growth, fixed–film, membrane biofilm, and bioslurry reactors
∗ Anaerobic and aerobic systems
∗ Hydrogeologic and microbial factors associated with in situ biodegradation
∗ Biofiltration of VOC vapors
∗ Composting
∗ Natural attenuation

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