Zero Liquid Discharge Wastewater Treatment System

From Introduction to Application
Artikelnummer: 978-3-031-84908-4
Einband: Fester Einband
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A Zero Liquid Discharge System (ZLDS) is a process that recovers water and solvents from wastewater. The remaining constituents are dehydrated to form pure water, resulting in zero waste. This book is a unique research-oriented guide covering the entire zero-liquid discharge process, from its introduction to its application. Zero liquid discharge water treatment plants require high engineering expertise and careful planning to achieve zero shots. Although it is an efficient wastewater treatment technique, improper industrial wastewater disposal can lead to environmental hazards such as water and soil pollution. This book focuses on ecological degradation and delves deeply into the consequences of improper industrial wastewater disposal, highlighting its effects on water pollution, ecosystem imbalance, and risks to human health. It offers a detailed examination of the resulting contamination and its far-reaching implications, emphasizing the need for proper disposal methods. One of the most critical needs for a healthy life is to provide healthy water and contaminants to be taken from the public water supplies. The book may reflect the healthy situation in many by presenting best practices, aiming to foster an understanding of the role of chemical contaminants in water systems in mitigating environmental hazards and the application of "zero liquid discharge technology" in detail. As industrial pollution continues to rise, there is a need to explore practical ways of managing industrial residues from wastewater. This book presents innovative research on using a "zero liquid discharge system" to achieve this locally and internationally. It also examines appropriate resource management strategies to address environmental concerns. This book critically reviews the health effects of industrial chemicals in the water supply. It examines current frameworks' limitations, challenges, and opportunities and discusses the benefits of using a "zero liquid discharge system" and their impact on global sustainability. The book also emphasizes this technology to limit toxic industrial material utilization. This chapter provides an overview of the occurrence of industrial chemicals in drinking water and the associated human health risks. This book also analyzes existing policies related to industrial wastewater and proposes policy recommendations for effective wastewater management using a zero-liquid discharge system. It discusses implementation strategies and policy adoption, emphasizing the role of policy in shaping and improving industrial wastewater management frameworks. The edited volume aims to highlight the critical operating factors and consider the large capital investments of this system and the operational costs. However, in this research-oriented book, the readers will clearly understand that this novel system can leave behind a dry sludge containing high concentrations of hazardous chemicals and heavy metals. This edited volume will show that the application of a Zero Liquid Discharge System (ZLDS) requires careful planning and analysis.


EUDR exemption - product or manufacturing materials placed on the market prior to 31.12.2025.

A Zero Liquid Discharge System (ZLDS) is a process that recovers water and solvents from wastewater. The remaining constituents are dehydrated to form pure water, resulting in zero waste. This book is a unique research-oriented guide covering the entire zero-liquid discharge process, from its introduction to its application. Zero liquid discharge water treatment plants require high engineering expertise and careful planning to achieve zero shots. Although it is an efficient wastewater treatment technique, improper industrial wastewater disposal can lead to environmental hazards such as water and soil pollution. This book focuses on ecological degradation and delves deeply into the consequences of improper industrial wastewater disposal, highlighting its effects on water pollution, ecosystem imbalance, and risks to human health. It offers a detailed examination of the resulting contamination and its far-reaching implications, emphasizing the need for proper disposal methods. One of the most critical needs for a healthy life is to provide healthy water and contaminants to be taken from the public water supplies. The book may reflect the healthy situation in many by presenting best practices, aiming to foster an understanding of the role of chemical contaminants in water systems in mitigating environmental hazards and the application of "zero liquid discharge technology" in detail. As industrial pollution continues to rise, there is a need to explore practical ways of managing industrial residues from wastewater. This book presents innovative research on using a "zero liquid discharge system" to achieve this locally and internationally. It also examines appropriate resource management strategies to address environmental concerns. This book critically reviews the health effects of industrial chemicals in the water supply. It examines current frameworks' limitations, challenges, and opportunities and discusses the benefits of using a "zero liquid discharge system" and their impact on global sustainability. The book also emphasizes this technology to limit toxic industrial material utilization. This chapter provides an overview of the occurrence of industrial chemicals in drinking water and the associated human health risks. This book also analyzes existing policies related to industrial wastewater and proposes policy recommendations for effective wastewater management using a zero-liquid discharge system. It discusses implementation strategies and policy adoption, emphasizing the role of policy in shaping and improving industrial wastewater management frameworks. The edited volume aims to highlight the critical operating factors and consider the large capital investments of this system and the operational costs. However, in this research-oriented book, the readers will clearly understand that this novel system can leave behind a dry sludge containing high concentrations of hazardous chemicals and heavy metals. This edited volume will show that the application of a Zero Liquid Discharge System (ZLDS) requires careful planning and analysis.


EUDR exemption - product or manufacturing materials placed on the market prior to 31.12.2025.
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VerlagSpringer International Publishing
EinbandFester Einband
Erscheinungsjahr2025
Seitenangabe214 S.
AusgabekennzeichenEnglisch
AbbildungenVIII, 214 p. 18 illus., 17 illus. in color., schwarz-weiss Illustrationen, farbige Illustrationen
MasseH23.5 cm x B15.5 cm
CoverlagSpringer (Imprint/Brand)
ReiheSpringer Water
AutorParray, Javid Ahmad (Hrsg.) / Li, Wen-Jun (Hrsg.) / Haghi, A. K. (Hrsg.)

Alle Bände der Reihe "Springer Water"

Über den Autor Javid Ahmad (Hrsg.) Parray

Dr Javid Ahmad Parray is currently teaching in the Department of Environmental Science at Government Degree College, Tangdhar Kupwara, Jammu and Kashmir, India, affiliated with the University of Kashmir, Srinagar. He also serves as the National Course Coordinator for two Environmental Science MOOCs under CeC-SWAYAM, Ministry of Education, Government of India, New Delhi. He has completed his M.Phil. and Ph.D. in Environmental Science from the University of Kashmir, Jammu and Kashmir, India, after qualifying the JKSLET examination, and later pursued postdoctoral research at the same institution. His core research interests span ecological and agricultural microbiology, environmental microbiome, climate change, and microbial biotechnology. He has participated in several national and international conferences and courses across countries, including Sri Lanka, Indonesia, and Malaysia. He has authored and edited numerous books, contributed extensively to high-impact journals and book chapters, and serves as editor, guest editor, and reviewer for reputed scientific journals. He is a member of various national and international scientific organizations and currently serves as Series Editor for the book series Microbiome Research in Plants and Soil and Microbial Genomics by an international publisher. Dr. Nowsheen Shameem is presently working as an Assistant professor in the Department of Environmental Science Cluster University Srinagar, Jammu and Kashmir, India-190001. Worked as Project associate in DBT Sanctioned project entitled " spawn production for the entrepreneurs of Kashmir Valley" at CORD, University of Kashmir. I finished my Doctorate through the University of Kashmir on the topic entitled "Phytochemical analysis and nutraceutical value of some wild mushrooms growing in Kashmir valley" in 2017. A. K. Haghi, at present serving as Research Associate, Department of Chemistry, Institute of Molecular Sciences, University of Coimbra, Coimbra, Portugal. Dr. Haghi is a retired professor and has written, co-written, edited or co-edited more than 1000 publications, including books, book chapters, and papers in refereed journals with over 4800 citations. Dr. A. K. Haghi is a highly prolific author and editor in the academic world, particularly in the fields of chemical engineering and materials science. He is the founder and former Editor-in-Chief of the International Journal of Chemoinformatics and Chemical Engineering and Polymers Research Journal. He has acted as an editorial board member of many international journals. He has secured UK design patents for multiple inventions. He has consistently ranked among the top 2% of scientists worldwide based on citations (the widely recognized Stanford/Elsevier ranking, an influential annual list identifying researchers in the world`s top 2% based on citations). Professor Haghi holds a BSc in urban and environmental engineering from the University of North Carolina (USA) and holds two MSc degrees, one in mechanical engineering from North Carolina State University (USA) and another one in applied mechanics, acoustics, and materials from the Université de Technologie de Compiègne (France). He was awarded a PhD in Engineering Sciences from Université de Franche-Comté (France).

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