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Membrane Fabrication.

By: Contributor(s): Material type: TextTextPublisher: Milton : Taylor & Francis Group, 2015Copyright date: ©2015Edition: 1st edDescription: 1 online resource (740 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781482210460
Subject(s): Genre/Form: Additional physical formats: Print version:: Membrane FabricationDDC classification:
  • 660/.28424
LOC classification:
  • TP159.M4 -- .M463 2015eb
Online resources:
Contents:
Front Cover -- Contents -- Preface -- Editors -- List of Contributors -- Chapter 1: Polymeric Membranes -- Chapter 2: Electrospinning : A Practical Approach for Membrane Fabrication -- Chapter 3: Control of Crystallization of Poly(Lactic Acid) Membranes -- Chapter 4: Innovative Methods to Improve Nanofiltration Performance through Membrane Fabrication and Surface Modification Using Various Types of Polyelectrolytes -- Chapter 5: Polysaccharides : A Membrane Material -- Chapter 6: Cellulose and Its Derivatives for Membrane Separation Processes -- Chapter 7: PVDF Hollow-Fiber Membrane Formation and Production -- Chapter 8: PVDF Membranes for Membrane Distillation : Controlling Pore Structure, Porosity, Hydrophobicity, and Mechanical Strength -- Chapter 9: Membrane Contactor for Carbon Dioxide Absorption and Stripping -- Chapter 10: Microstructured Ceramic Hollow-Fiber Membranes : Development and Application -- Chapter 11: Ceramic Hollow-Fiber Support through a Phase Inversion-Based Extrusion/Sintering Technique for High-Temperature Energy Conversion Systems -- Chapter 12: Development of Large-Scale Industrial Applications of Novel Membrane Materials : Carbon Nanotubes, Aquaporins, Nanofibers, Graphene, and Metal-Organic Frameworks -- Chapter 13: Pd-Based Membranes and Membrane Reactors for Hydrogen Production -- Chapter 14: Current Progress of Nanomaterial/Polymer Mixed-Matrix Membrane for Desalination -- Chapter 15: Fabrication of Polymeric and Composite Membranes -- Chapter 16: Strategies to Use Nanoparticles in Polymeric Membranes -- Chapter 17: Surface Modification of Inorganic Materials for Membrane Preparation -- Chapter 18: Fabrication of ­Low-Fouling Composite Membranes for Water Treatment -- Chapter 19: Fabrication of Polymer Nanocomposite Membrane by Intercalating Nanoparticles for Direct Methanol Fuel Cell.
Chapter 20: Effects of Solvent and Blending on the Physical Properties of Sulfonated Poly(Ether Ether Ketone) : A Promising Membrane Material for PEMFC -- Back Cover.
Summary: Membranes play a crucial role in ensuring the optimum use and recovery of materials in manufacturing. This book examines current membrane fabrication methods and how they are used in the optimization of membrane applications. They present innovative ideas on the development of membrane science and technology with a view toward efficient application of membrane separation processes. Exploring fabrication processes for polymeric, inorganic, and composite membranes, the book details the effects of different fabrication conditions and how these conditions can be controlled to optimize membrane construction and the subsequent application of the membrane system.
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Front Cover -- Contents -- Preface -- Editors -- List of Contributors -- Chapter 1: Polymeric Membranes -- Chapter 2: Electrospinning : A Practical Approach for Membrane Fabrication -- Chapter 3: Control of Crystallization of Poly(Lactic Acid) Membranes -- Chapter 4: Innovative Methods to Improve Nanofiltration Performance through Membrane Fabrication and Surface Modification Using Various Types of Polyelectrolytes -- Chapter 5: Polysaccharides : A Membrane Material -- Chapter 6: Cellulose and Its Derivatives for Membrane Separation Processes -- Chapter 7: PVDF Hollow-Fiber Membrane Formation and Production -- Chapter 8: PVDF Membranes for Membrane Distillation : Controlling Pore Structure, Porosity, Hydrophobicity, and Mechanical Strength -- Chapter 9: Membrane Contactor for Carbon Dioxide Absorption and Stripping -- Chapter 10: Microstructured Ceramic Hollow-Fiber Membranes : Development and Application -- Chapter 11: Ceramic Hollow-Fiber Support through a Phase Inversion-Based Extrusion/Sintering Technique for High-Temperature Energy Conversion Systems -- Chapter 12: Development of Large-Scale Industrial Applications of Novel Membrane Materials : Carbon Nanotubes, Aquaporins, Nanofibers, Graphene, and Metal-Organic Frameworks -- Chapter 13: Pd-Based Membranes and Membrane Reactors for Hydrogen Production -- Chapter 14: Current Progress of Nanomaterial/Polymer Mixed-Matrix Membrane for Desalination -- Chapter 15: Fabrication of Polymeric and Composite Membranes -- Chapter 16: Strategies to Use Nanoparticles in Polymeric Membranes -- Chapter 17: Surface Modification of Inorganic Materials for Membrane Preparation -- Chapter 18: Fabrication of ­Low-Fouling Composite Membranes for Water Treatment -- Chapter 19: Fabrication of Polymer Nanocomposite Membrane by Intercalating Nanoparticles for Direct Methanol Fuel Cell.

Chapter 20: Effects of Solvent and Blending on the Physical Properties of Sulfonated Poly(Ether Ether Ketone) : A Promising Membrane Material for PEMFC -- Back Cover.

Membranes play a crucial role in ensuring the optimum use and recovery of materials in manufacturing. This book examines current membrane fabrication methods and how they are used in the optimization of membrane applications. They present innovative ideas on the development of membrane science and technology with a view toward efficient application of membrane separation processes. Exploring fabrication processes for polymeric, inorganic, and composite membranes, the book details the effects of different fabrication conditions and how these conditions can be controlled to optimize membrane construction and the subsequent application of the membrane system.

Description based on publisher supplied metadata and other sources.

Electronic reproduction. Ann Arbor, Michigan : ProQuest Ebook Central, 2024. Available via World Wide Web. Access may be limited to ProQuest Ebook Central affiliated libraries.

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