Electrodeionization: Fundamentals, Methods and Applications
Electrodeionization: Fundamentals, Methods and Applications explains the latest developments in research on ion exchange membranes, wastewater zero discharge based on ion exchange membranes, membrane capacitive deionization, membrane free and resin wafer electrodeionization cells. Electrodeionization is a fully advanced ion exchange method that combines ion exchange, electrodialysis, and elusion procedures for metal particle removal from wastewater. Gaining popularity due to the lack of chemicals required for resin regeneration and the production of high purity water, this cost-effective method efficiently assists in ion removal and recovery. The technology is suitable for a wide range of applications including desalination, water and wastewater treatment, extraction of high-value products, concentrating and purifying operations, and energy savings, and as such will be of interest to researchers and students working on these areas as well as those in chemicals manufacture, energy generation and storage. - Covers the continuous electrodeionization working principle - Includes multiple applications of electrodeionization - Provides updates on resin-wafer, membrane-free and electrostatically shielded electrodeionization
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Electrodeionization: Fundamentals, Methods and Applications
Electrodeionization: Fundamentals, Methods and Applications explains the latest developments in research on ion exchange membranes, wastewater zero discharge based on ion exchange membranes, membrane capacitive deionization, membrane free and resin wafer electrodeionization cells. Electrodeionization is a fully advanced ion exchange method that combines ion exchange, electrodialysis, and elusion procedures for metal particle removal from wastewater. Gaining popularity due to the lack of chemicals required for resin regeneration and the production of high purity water, this cost-effective method efficiently assists in ion removal and recovery. The technology is suitable for a wide range of applications including desalination, water and wastewater treatment, extraction of high-value products, concentrating and purifying operations, and energy savings, and as such will be of interest to researchers and students working on these areas as well as those in chemicals manufacture, energy generation and storage. - Covers the continuous electrodeionization working principle - Includes multiple applications of electrodeionization - Provides updates on resin-wafer, membrane-free and electrostatically shielded electrodeionization
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Electrodeionization: Fundamentals, Methods and Applications

Electrodeionization: Fundamentals, Methods and Applications

Electrodeionization: Fundamentals, Methods and Applications

Electrodeionization: Fundamentals, Methods and Applications

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Overview

Electrodeionization: Fundamentals, Methods and Applications explains the latest developments in research on ion exchange membranes, wastewater zero discharge based on ion exchange membranes, membrane capacitive deionization, membrane free and resin wafer electrodeionization cells. Electrodeionization is a fully advanced ion exchange method that combines ion exchange, electrodialysis, and elusion procedures for metal particle removal from wastewater. Gaining popularity due to the lack of chemicals required for resin regeneration and the production of high purity water, this cost-effective method efficiently assists in ion removal and recovery. The technology is suitable for a wide range of applications including desalination, water and wastewater treatment, extraction of high-value products, concentrating and purifying operations, and energy savings, and as such will be of interest to researchers and students working on these areas as well as those in chemicals manufacture, energy generation and storage. - Covers the continuous electrodeionization working principle - Includes multiple applications of electrodeionization - Provides updates on resin-wafer, membrane-free and electrostatically shielded electrodeionization

Product Details

ISBN-13: 9780443189845
Publisher: Elsevier Science
Publication date: 01/22/2024
Sold by: Barnes & Noble
Format: eBook
Pages: 272
File size: 21 MB
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About the Author

Dr. P. Senthil Kumar is an Associate Professor in the Centre for Pollution Control and Environmental Engineering, Pondicherry University, Kalapet, Puducherry, India. He has a wide research experience in the fields of water/wastewater. He has 17 years of teaching and research experience. He has 30100 citations with an author's h-index of 85 along with an i10 index of 464. He has been listed in Clarivate Highly Cited Researcher 2022 (Cross-Field) and also received the AICTE National Technical Teachers Award (NTTA 2022).Dr. B. Senthil Rathi is an Assistant Professor (SG) in the Department of Bioengineering, Institute of Biotechnology, Saveetha School of Engineering, SIMATS, Chennai, 602105, India. She has a wide research experience in the fields of Water/Wastewater Analysis, Emerging contaminants removal, Adsorption, Pollution Control Treatment Methods and Electrochemical treatment methods. She has 10 years of teaching and research experience.
Dr. P. Senthil Kumar is an Associate Professor in the Centre for Pollution Control and Environmental Engineering, Pondicherry University, Kalapet, Puducherry, India. He has a wide research experience in the fields of water/wastewater. He has 17 years of teaching and research experience. He has 30100 citations with an author’s h-index of 85 along with an i10 index of 464. He has been listed in Clarivate Highly Cited Researcher 2022 (Cross-Field) and also received the AICTE National Technical Teachers Award (NTTA 2022).

Table of Contents

1. Introduction2. Technology overview of electrodeionization3. Configuration and mechanism of electrodeionization module4. Construction of Electrodeionization5. Application and comparison of Electrodeionization6. Heavy metal ions removal7. Electrodeionization in Desalination and Water-softening8. Production of high pure water using Electrodeionization9. Advances future scope in Electrodeionization10. Economics and environmental aspects of the EDI technique

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Covers the recent advances and applications of Electrodeionization, a novel hybrid purification method

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