Photocatalytic Degradation of Pharmaceutical Wastewater

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· Advances in Chemical Engineering Book 65 · Academic Press
Ebook
318
Pages
Eligible
This book will become available on September 1, 2025. You will not be charged until it is released.

About this ebook

Photocatalytic Degradation of Pharmaceutical Wastewater, Volume 65 in the Advances in Chemical Engineering series, highlights new advances in the field, with this volume presenting insightful chapters on topics such as An Overview of Global Occurrences, Physicochemical Properties, and Ecotoxic Effects of Pharmaceuticals, Performances of Conventional Treatment Techniques for the Treatment of Pharmaceutical Contaminated Water: Challenges and Opportunities, Advancements in Photocatalysis: Basics, Classifications, and Controlling Parameters, Advancements in Photocatalyst Synthesis, Physicochemical Characterizations of the Photocatalysts, and more.Other sections cover Enhanced Photocatalytic Degradations of Various Pharmaceuticals: Analysis and Degradation Mechanisms, Kinetic Modeling and Rate of Reactions for the Photocatalytic Degradation of Pharmaceuticals, Integration of the Photocatalytic System with Other Advanced Treatment Techniques, Economic Aspects of Photocatalytic Pharmaceutical Degradation, and Case Studies on Photocatalytic Degradation of Pharmaceuticals in Different Countries. - Provides the authority and expertise of leading contributors from an international board of authors - Presents the latest release in the Advances in Chemical Engineering series - Includes the latest information on Chemical Engineering

About the author

Dr. Mihir Kumar Purkait is a Professor in the Department of Chemical Engineering at the Indian Institute of Technology Guwahati, Assam, India. His current research activities are focused in four distinct areas viz. i) advanced separation technologies, ii) waste to energy, iii) smart materials for various applications, and iv) process intensification. In each of the area, his goal is to synthesis stimuli responsive materials and to develop a more fundamental understanding of the factors governing the performance of the chemical and biochemical processes. He has more than 20 years of experience in academics and research and published more than 300 papers in different reputed journals (Citation: >16,500, h-index = 75, i-10 index = 193). He has 12 patents and completed 43 sponsored and consultancy projects from various funding agencies.

Dr. Bramha Gupta is an Institute Post-Doctoral Fellow (IPDF) at the Centre for Sustainable Water Research, Indian Institute of Technology Guwahati, Assam, India. He has obtained his PhD degree from the School of Water Resources, Indian Institute of Technology Kharagpur, and M. Tech in Environmental Science and Engineering from the Indian Institute of Technology (Indian School of Mines) Dhanbad, India. He has completed his B. Tech in Civil Engineering (Gold-Medalist) from Guru Ghasidas Vishwavidyalaya Bilaspur, India. His research interests include water and wastewater treatment and reuse through photocatalysis, coagulation, 3D printed structures, moving bed biofilm reactor, and adsorption. He has published 19 scientific research and review papers in various reputed International journals. He is also credited with an Indian Patent (2023) based on a biological treatment system. He is a potential reviewer of several International journals. He attended several conferences and workshops of National and International repute.

Dr. Pranjal Pratim Das is a Technical Associate at the National Jal Jeevan Mission (NJJM) under the Ministry of Jal Shakti, Govt. of India. He has completed his PhD from the Department of Chemical Engineering, Indian Institute of Technology Guwahati, Assam, India. He received his M. Tech and B. Tech in Food Engineering and Technology from Tezpur (Central) University, Assam, India. His research work is purely dedicated to industrial wastewater treatment via electrochemical and advanced oxidation techniques. He has extensively worked on the application of hybrid ozone-electrocoagulation process to treat heavy metals and cyanide-contaminated effluents from different unit operations of steel industry. He has authored several scientific book publications, research/review articles and book chapters in various reputed international journals on water and wastewater treatment. He has fabricated and demonstrated many lab-scale modules for the green energy generation from sewage wastewaters. He has also worked on the treatment of ground and surface waters and has delivered many pilot plant set-ups to several water treatment facilities across the state of Assam (India) for the supply of safe drinking water

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