Analysis and Formation of Disinfection Byproducts in Drinking Water
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Analysis and Formation of Disinfection Byproducts in Drinking Water

Analysis and Formation of Disinfection Byproducts in Drinking Water


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About the Book

Drinking water disinfection has markedly reduced diseases causes by waterborne pathogenic microorganisms. However, an unintended consequence of disinfection and/or oxidation processes is the generation of disinfection byproducts (DBPs) which are formed from the reactions of disinfectants/oxidants with water matrix components. This volume of the Comprehensive Analytical Chemistry Handbook presents recent advances about the formation, identification, and quantification of inorganic and organic DBPs during oxidative processes. The book begins with a first chapter reviewing the most recent non-targeted screening approaches and workflows to characterize DBPs using low-, high-, and ultra-high-resolution mass spectrometry. The second chapter discusses the analysis of inorganic chloramines in waters using on-site and/or in-lab analytical methods. The third chapter provides an overview of the current knowledge about the mechanisms of chlorine dioxide reactions and byproducts formation. The fourth chapter presents some fundamental and practical aspects about ozonation processes in water treatment and provides an overview about ozone reaction mechanisms and byproducts formation. The fifth chapter focuses on the reactivity of halide ions, particularly bromide and iodide, with common oxidants and the role they play in determining the speciation of DBPs in treated waters. The chapter also presents strategies to mitigate the formation of DBPs during oxidation processes. Finally, the last chapter tackles the topic of DBPs formation during potable water reuse. It discusses the formation of DBPs of major concern in both memebrane-based and non-membrane-based potable water reuse treatment schemes.

Researchers, water treatment specialists, and regulators will find in this book a valuable and compact resource on several key topics regarding the formation, identification, quantification, and mitigation of DBPs.
About the Author: Tarek Manasfi works as a postdoctoral scientist at Eawag - the Swiss Federal Institute of Aquatic Science and Technology. Tarek completed his PhD studies at Aix-Marseille University, France where he investigated the fate of organic UV filters in chlorinated bromide-rich waters and their contribution to the formation of toxic disinfection byproducts. Tarek was the recipient of the Eawag Postdoctoral Fellowship in 2018 and he is currently funded by a European Marie Curie Individual Fellowship.
His research focuses on oxidation and disinfection processes in different contexts including advanced wastewater treatment. Tarek investigates the formation mechanisms and kinetics of toxic (by)products generated during oxidation processes. In his research, Tarek applies tools such as effect-directed analysis integrating advanced chemical and toxicological analyses in order to identify toxic compounds formed during such processes.
Tarek has received multiple awards for his work including the 2016 PhD student award of the French Chemical Society (SCF), Region of Provence-Alpes-Côte d'Azur. Tarek has served as guest editor for special issues in multiple high-impact journals (e.g., Environment International), and he is currently an editorial board member of the International Journal of Hygiene and Environmental health. Tarek is currently serving as the co-chairman of the 2021 Gordon Research Seminar on Water Disinfection, Byproducts, and Health (deferred to 2023).


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Product Details
  • ISBN-13: 9780444643438
  • Publisher: Elsevier Science
  • Publisher Imprint: Elsevier
  • Height: 229 mm
  • No of Pages: 312
  • Series Title: Wilson & Wilson's Comprehensive Analytical Chemistry
  • Sub Title: Volume 92
  • Width: 152 mm
  • ISBN-10: 0444643435
  • Publisher Date: 26 Mar 2021
  • Binding: Hardback
  • Language: English
  • Returnable: N
  • Spine Width: 11 mm
  • Weight: 458 gr


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Analysis and Formation of Disinfection Byproducts in Drinking Water
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