Advanced Materials for Membrane Fabrication and Modification (eBook)

Artikelnummer: 978-1-351-73088-4
Einband: Adobe Digital Editions
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Membranes are an energy efficient separation technology that are now the basis for many water treatment and food processing applications. However, there is the potential to improve the operating performance of these separations and to extend the application of membranes to energy production, gas separations, organic solvent-based separations, and biomedical applications through novel membrane materials. This book contains 20 chapters written by leading academic researchers on membrane fabrication and modification techniques and provides a comprehensive overview on the recent developments of membrane technology.

Membranes can be manufactured from a range of materials including polymeric compounds, and ceramic materials, and both these materials are considered in the book. There are 5 chapters on water and wastewater membranes that cover the fabrication of thin film (TFC) composite membranes for nanofiltration(NF)/reverse osmosis (RO)/forward osmosis (FO) applications, stimuli responsive membranes, electrospun membranes, porous ceramic membranes, and polymeric ultrafiltration (UF) manufacture and modification.

There are another 6 chapters on gas separation that consider carbon membranes, zeolite membranes, silica template and metal oxide silica membranes, TFC membranes, silica membranes, and metal organic framework (MOF) membranes. Zeolite membranes are also considered for organic solvent applications, as are solvent-resistant membranes manufactured by phase inversion, ceramic-supported composite membranes, and ceramic NF membranes. The emerging areas of membranes for energy and biomedical applications have 3 and 2 chapters, respectively. Energy applications consider ion exchange membranes for use in fuel cells, membranes for electrodialysis, and membranes for use in microbial fuel cells. For biomedical applications the chapters focus on hemodialysis membranes and redox responsive membranes.

Membranes are an energy efficient separation technology that are now the basis for many water treatment and food processing applications. However, there is the potential to improve the operating performance of these separations and to extend the application of membranes to energy production, gas separations, organic solvent-based separations, and biomedical applications through novel membrane materials. This book contains 20 chapters written by leading academic researchers on membrane fabrication and modification techniques and provides a comprehensive overview on the recent developments of membrane technology.

Membranes can be manufactured from a range of materials including polymeric compounds, and ceramic materials, and both these materials are considered in the book. There are 5 chapters on water and wastewater membranes that cover the fabrication of thin film (TFC) composite membranes for nanofiltration(NF)/reverse osmosis (RO)/forward osmosis (FO) applications, stimuli responsive membranes, electrospun membranes, porous ceramic membranes, and polymeric ultrafiltration (UF) manufacture and modification.

There are another 6 chapters on gas separation that consider carbon membranes, zeolite membranes, silica template and metal oxide silica membranes, TFC membranes, silica membranes, and metal organic framework (MOF) membranes. Zeolite membranes are also considered for organic solvent applications, as are solvent-resistant membranes manufactured by phase inversion, ceramic-supported composite membranes, and ceramic NF membranes. The emerging areas of membranes for energy and biomedical applications have 3 and 2 chapters, respectively. Energy applications consider ion exchange membranes for use in fuel cells, membranes for electrodialysis, and membranes for use in microbial fuel cells. For biomedical applications the chapters focus on hemodialysis membranes and redox responsive membranes.

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VerlagTaylor & Francis Ebooks
EinbandAdobe Digital Editions
Erscheinungsjahr2018
Seitenangabe620 S.
AusgabekennzeichenEnglisch
Abbildungen230 schwarz-weiße und 11 farbige Abbildungen, 48 schwarz-weiße Tabellen
Masse10'566 KB
Auflage18001 A. 1. Auflage
PlattformEPUB
AutorGray, Stephen (Hrsg.) / Tsuru, Toshinori (Hrsg.) / Cohen, Yoram (Hrsg.) / Lau, Woei-Jye (Hrsg.)

Über den Autor Stephen (Hrsg.) Gray

Stephen Gray is an Honorary Professor at the Institute for Sustainable Industries and Liveable Cities (ISILC) at Victoria University and was previously the Executive Director of the ISILC. His main research activity has been in the field of membrane technology with an emphasis on water and wastewater treatment. He was recognized as a "Thought Leader" in Lux Research's international review of water research (2013), was president of the Aseanian Membrane Society (2018-2019), is an Honorary Member of the Australasian Membrane Society (MSA), and led the CSIRO Cluster project "Advanced Membranes for Water Treatment, a collaboration between 9 Australian universities and CSIRO.Mathias Ulbricht is a Full Professor of Chemical Technology in the Department of Chemistry at University Duisburg-Essen, Germany. His research is in the field of functional polymeric and nanohybrid materials and is focused on synthetic membranes and membrane-based technologies for water purification, bioseparation, and energy conversion. More than 80 doctoral and over 125 master students have successfully graduated under his supervision.Woei Jye Lau is a Professor in the Faculty of Chemical and Energy Engineering at Universiti Teknologi Malaysia. His primary research revolves around membrane science and technology, with a particular focus on water and wastewater treatment. Dr. Lau has secured more than 20 patents in collaboration with academic and industrial partners and has authored two other books published by CRC Press. He serves on the Management Committee of the International Water Association (IWA) Specialist Group on Membrane Technology, alongside coordinating the Malaysia Alumni of Sakura Science Association (MASSA), affiliated with the Japan Science and Technology Agency (JST).Xuesong Li has been an Associate Professor at Tongji University since 2020. He earned his Ph.D. in 2014 from Nanyang Technological University, Singapore, and later conducted postdoctoral research at the Singapore Membrane Technology Centre and the University of British Columbia. His research focuses on developing cutting-edge membrane technologies for wastewater/water treatment and resource recovery.

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