Natural Organic Matter in Water: Characterization, Treatment Methods, and Climate change Impact

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Notă GoodReads:
en Limba Engleză Paperback – November 2022
Natural Organic Matter in Water: Characterization, Treatment Methods, and Climate Change Impact, Second Edition focuses on advanced filtration and treatment options, as well as processes for reducing disinfection by-products, making it an essential resource on the latest breakthroughs in the characterization, treatment and removal of natural organic matter (NOM) from drinking water. Based on the editor’s years of research and field experience, the book covers general parameters, isolation and concentration, fractionation, composition and structural analysis, and biological testing, along with removal methods such as inorganic coagulants, polyelectrolytes and composite coagulants.
In addition, sections cover electrochemical and membranes removal methods such as electrocoagulation, electrochemical oxidation, microfiltration and ultrafiltration, nanofiltration, and membrane fouling. This book is a valuable guide for engineers and researchers looking to integrate methods, processes and technologies to achieve desired affects.

  • Provides a summary of up-to-date information surrounding NOM
  • Presents enhanced knowledge on treatment strategies for the removal of NOM
  • Covers conventional as well as advanced NOM removal methods
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ISBN-13: 9780128242742
ISBN-10: 0128242744
Pagini: 420
Dimensiuni: 191 x 235 mm
Ediția: 2

Public țintă

Graduate students, postdoctoral fellows, professors in environmental science and engineering and chemical engineering, and other interdisciplinary fields of science including soil science


1. General Introduction
2. Impact of Climate change to NOM
3. NOM properties and characterization
4. NOM removal by Coagulation
5. NOM removal by Electrochemical methods
6. NOM removal by Membrane processes
7. NOM Removal by Advanced Oxidation Processes
8. NOM Removal by Adsorption
9. NOM Removal by Ion Exchange
10. NOM Removal by Biological treatment
11. Integrated Methods
12. Concluding Remarks