Environmental Separation of Heavy Metals: Engineering Processes
Editat de Arup K. SenGuptaen Limba Engleză Paperback – 11 sep 2019
Both the basics and the applications of techniques such as ion-exchange, specialized sorbents, novel membranes, advanced precipitates, and electrokinetic processes are presented with a view to current use and potential for future applications such as resource reuse. Information in this volume enables engineers and other investigators to adapt and select the best means to remove and, in certain instances, recover heavy metals.
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Specificații
ISBN-13: 9780367396954
ISBN-10: 0367396955
Pagini: 396
Dimensiuni: 178 x 254 x 23 mm
Greutate: 0.68 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
ISBN-10: 0367396955
Pagini: 396
Dimensiuni: 178 x 254 x 23 mm
Greutate: 0.68 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Public țintă
Academic and Professional Practice & DevelopmentCuprins
Principles of Heavy Metals Separation: An Introduction. Adsorption of Elemental Mercury by Virgin and Impregnated Activated Carbon. Trace Heavy Metal Separation by Chelating Ion Exchangers. Elimination of Heavy Metals from Wastewaters by Magnetic Technologies. Polyelectrolyte Enhanced Removal of Heavy Metals from Soils and Other Solids. Case Studies for Immobilizing Toxic Metals with Iron Coprecipitation and Adsorption Removal of Heavy Metals by Activated Carbon. Arsenic In Subsurface Water: Its Chemistry and Removal by Engineered Processes. Cr(III) Separation and Recovery from Tannery Wastes: Research, Pilot and Demonstration Scale Investigation. HUMASORB: A Coal-Derived Humic Acid Based Heavy-Metal Sorbent.
Descriere
A comprehensive methods book, this text explains advanced and emerging technologies for removing heavy metals from wastestreams and contaminated sites. After explaining the chemistry of heavy metals and their transport in various media, the book offers a comprehensive analysis of strategies for separating metals from groundwater, wastewater, contaminated soils, and industrial sludges. Both the basics and the applications of techniques such as ion-exchange, specialized sorbents, novel membranes, advanced precipitates, and electrokinetic processes are presented with a view to current use and potential for future applications such as resource reuse.