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Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies by Etienne Paul Hardcover | Indigo Chapters - nouveau livre

ISBN: 9780470768822

A comprehensive guide to sludge management, reuse, and disposal When wastewater is treated, reducing organic material to carbon dioxide, water, and bacterial cells the cells are disposed … Plus…

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Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies - edition reliée, livre de poche

ISBN: 9780470768822

Hardback, [PU: John Wiley & Sons Inc], This book provides a comprehensive and up-to-date picture of sludge minimization and reuse with a focus on process fundamentals, feasibility, and co… Plus…

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Etienne Paul; Yu Liu:
Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies - edition reliée, livre de poche

2012

ISBN: 9780470768822

Buch, Hardcover, [PU: John Wiley & Sons Inc], John Wiley & Sons Inc, 2012

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Etienne Paul; Yu Liu:
Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies - edition reliée, livre de poche

2012, ISBN: 9780470768822

Hardcover, Buch, [PU: John Wiley & Sons Inc]

Frais d'envoiVersand in 10-15 Tagen, , Versandkostenfrei innerhalb der BRD. (EUR 0.00)
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Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies - Etienne Paul; Yu Liu
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Etienne Paul; Yu Liu:
Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies - edition reliée, livre de poche

2012, ISBN: 9780470768822

Hardcover, Buch, [PU: Wiley-Blackwell]

  - Frais d'envoiVersand in 10-15 Tagen, , Versandkostenfrei innerhalb der BRD. (EUR 0.00)

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Informations détaillées sur le livre - Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies by Etienne Paul Hardcover | Indigo Chapters


EAN (ISBN-13): 9780470768822
ISBN (ISBN-10): 0470768827
Version reliée
Date de parution: 2012
Editeur: Etienne Paul

Livre dans la base de données depuis 2014-02-20T14:08:16+01:00 (Zurich)
Page de détail modifiée en dernier sur 2023-01-27T15:14:13+01:00 (Zurich)
ISBN/EAN: 9780470768822

ISBN - Autres types d'écriture:
0-470-76882-7, 978-0-470-76882-2
Autres types d'écriture et termes associés:
Auteur du livre: etienne, liu, paul frank
Titre du livre: sensible sludge, biomaterials


Données de l'éditeur

Auteur: Etienne Paul; Yu Liu
Titre: Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies
Editeur: John Wiley & Sons
536 Pages
Date de parution: 2012-07-26
Poids: 0,850 kg
Langue: Anglais
109,00 € (DE)
No longer receiving updates
163mm x 235mm x 33mm

BB; gebunden; Hardcover, Softcover / Chemie; Umweltchemie; Chemistry; Umweltchemie; Umwelttechnik; Environmental Engineering; Chemie; Chemical Engineering; Environmental Chemistry; Civil Engineering & Construction; Bauingenieur- u. Bauwesen; Chemische Verfahrenstechnik; Umweltchemie; Umwelttechnik; Allg. Chemische Verfahrenstechnik

A comprehensive guide to sludge management, reuse, and disposal When wastewater is treated, reducing organic material to carbon dioxide, water, and bacterial cells-the cells are disposed of, producing a semisolid and nutrient-rich byproduct called sludge. The expansion in global population and industrial activity has turned the production of excess sludge into an international environmental challenge, with the ultimate disposal of excess sludge now one of the most expensive problems faced by wastewater facilities. Written by two leading environmental engineers, Biological Sludge Minimization and Biomaterials/Bioenergy Recovery Technologies offers a comprehensive look at cutting-edge techniques for reducing sludge production, converting sludge into a value-added material, recovering useful resources from sludge, and sludge incineration. Reflecting the impact of new stringent environmental legislation, this book offers a frank appraisal of how sludge can be realistically managed, covering key concerns and the latest tools: * Fundamentals of biological processes for wastewater treatment, wastewater microbiology, and microbial metabolism, essential to understanding how sludge is produced * Prediction of primary sludge and waste-activated sludge production, among the chief design and operational challenges of a wastewater treatment plant * Technologies for sludge reduction, with a focus on reducing microbial growth yield as well as enhancing sludge disintegration * The use of anerobic digestion of sewage sludge for biogas recovery, in terms of process fundamentals, design, and operation * The use of the microbial fuel cell (MFC) system for the sustainable treatment of organic wastes and electrical energy recovery

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