Thermal Induced Membrane Separation Processes
Häftad, Engelska, 2020
Av Mihir Kumar Purkait, Randeep Singh, Piyal Mondal, Dibyajyoti Haldar, India) Purkait, Mihir Kumar (Professor, Department of Chemical Engineering, Indian Institute of Technology Guwahati, Assam, India) Singh, Randeep (Department of Chemical Engineering, Indian Institute of Technology Guwahati, Guwahati, India) Mondal, Piyal (Department of Chemical Engineering, Indian Institute of Technology Guwahati, Guwahati, India) Haldar, Dibyajyoti (Assistant Professor, Department of Biotechnology, Karunya Institute of Technology and Sciences, Coimbatore, Tamil Nadu
2 879 kr
Thermal Induced Membrane Separation Processes describes the fundamental and advanced areas associated with the field of thermal induced membrane separation processes. It includes extensive coverage of material selection, types, and theory of thermal induced membrane fabrication, characterization, and modification. This book focuses on the applications of various thermal induced membrane processes and discusses ancillary topics related to the subject, such as membrane modules, membrane contactors and reactors, preparation and characterization techniques, smart membranes, fouling and its mitigation, and economic analysis of the thermal induced membrane separation processes.
Thermal Induced Membrane Separation Processes elaborates on every aspect on the thermal induced membranes in a simple and straightforward manner, helping readers ranging from students to researchers in academia and the industry to understand the processes for successful execution and implementation into their research.
- Covers entire field of thermal induced membranes, providing basic to advanced knowledge of thermal induced membranes in a single source
- Presents state-of-art research in the field
- Includes the most up-to-date examples of the fabrication, modification, and applications of thermal induced membranes
Produktinformation
- Utgivningsdatum2020-04-07
- Mått152 x 229 x undefined mm
- Vikt510 g
- FormatHäftad
- SpråkEngelska
- Antal sidor318
- FörlagElsevier Science
- ISBN9780128188019
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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. Randeep Singh is a researcher in the Department of Chemical Engineering at Indian Institute of Technology Guwahati. His research work is dedicated to the preparation of various membranes and the mathematical analysis of the transport phenomena in membrane separation processes, including wastewater treatment, fruit juice clarification, protein separation, and value-added product separation from biogenic source. He is also working on fabrication of different membrane modules for environmental separation. He has authored two books. Piyal Mondal is a post-doctoral research associate in the Department of Chemical Engineering at the Indian Institute of Technology Guwahati, India. His research interests lie in green synthesis of metal nanoparticles for real life applications. Dr. Dibyajyoti Haldar is an Assistant Professor in the Department of Biotechnology at Karunya Institute of Technology and Sciences (Deemed to be University), Coimbatore, India. He is a former Post-Doctoral Fellow at the Centre for the Environment, Indian Institute of Technology Guwahati (IITG), India. He obtained his Ph.D in Chemical Engineering from the National Institute of Technology Agartala (NITA), India, and his M.Tech in Environmental Science and Technology from the National Institute of Technology Durgapur (NITDGP), India. His research work includes conversion of lignocellulosic biomass into fermentable sugars, enzymatic hydrolysis, biofuels, formation of value-added products derived from agricultural wastes and processes kinetics and modelling. He has published more than 20 scientific research and review papers in various reputed International journals. He is the author of several book chapters and two books (ISBN: 9780128188019 and ISBN: 9780128235348) published in Elsevier. Dr. Haldar is the Review Editor for Frontiers in Chemistry journal (SCI indexed) in the Green and Sustainable Chemistry Section. He is the recipient of Most Cited Review Paper Award for his review article “A review on the production of fermentable sugars from lignocellulosic biomass through conventional and enzymatic route–A comparison published & downloaded for the period 2016-2020 in International Journal of Green Energy organized by 13th International Green Energy Conference on 18th July, 2021 in Beijing, China. He also received International Teaching Excellence Award in Biochemical Engineering in Global Annual Education & Research Excellence Awards 2021 by Centre for Professional Advancement (CPACE, AP) on 18th December 2021. During his Ph.D., he received the Best Oral Presentation Award in a one-day workshop on ''Current Trends in Scientific Research" at Research Scholars' Day 2018 organized by the National Institute of Technology Agartala, India. He is a potential reviewer of various SCI-indexed International journals. He attended several conferences of National and International repute.
- 1. Thermal Induced Membrane Separation Processes: An Introduction2. Theoretical Aspects, Design, and Modelling in thermal induced membrane separation processes3. Membrane materials and modification for thermal induced membrane separation processes4. Fabrication and characterization techniques for thermal induced membrane separation processes5. Membrane Distillation6. Pervaporation7. Membrane Crystallization8. Membrane Contactors9. Membrane Reactors and their applications in thermal induced membrane separation processes10. Novel smart, superhydrophobic, and next generation membranes for thermal induced membrane separation processes11. Membrane Processes in Integrated Systems12. Fouling and its mitigation in thermal induced membrane separation processes13. Applications of thermal induced membrane separation processes14. Advancements in thermal induced membrane separation processes and cost analysis
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