Materials Science of Membranes for Gas and Vapor Separation
eBook - PDF

Materials Science of Membranes for Gas and Vapor Separation

  1. English
  2. PDF
  3. Available on iOS & Android
eBook - PDF

Materials Science of Membranes for Gas and Vapor Separation

About this book

Materials Science of Membranes for Gas and Vapor Separation is a one-stop reference for the latest advances in membrane-based separation and technology. Put together by an international team of contributors and academia, the book focuses on the advances in both theoretical and experimental materials science and engineering, as well as progress in membrane technology. Special attention is given to comparing polymer and inorganic/organic separation and other emerging applications such as sensors.

This book aims to give a balanced treatment of the subject area, allowing the reader an excellent overall perspective of new theoretical results that can be applied to advanced materials, as well as the separation of polymers. The contributions will provide a compact source of relevant and timely information and will be of interest to government, industrial and academic polymer chemists, chemical engineers and materials scientists, as well as an ideal introduction to students.

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Yes, you can access Materials Science of Membranes for Gas and Vapor Separation by Benny Freeman, Yuri Yampolskii, Ingo Pinnau, Benny Freeman,Yuri Yampolskii,Ingo Pinnau in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Chemical & Biochemical Engineering. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Materials Science of Membranes for Gas and Vapor Separation
  2. Contents
  3. Contributors
  4. Preface
  5. 1 Transport of Gases and Vapors in Glassy and Rubbery Polymers
  6. 2 Principles of Molecular Simulation of Gas Transport in Polymers
  7. 3 Molecular Simulation of Gas and Vapor Transport in Highly Permeable Polymers
  8. 4 Predicting Gas Solubility in Membranes through Non-Equilibrium Thermodynamics for Glassy Polymers
  9. 5 The Solution–Diffusion Model: A Unified Approach to Membrane Permeation
  10. 6 Positron Annihilation Lifetime Spectroscopy and Other Methods for Free Volume Evaluation in Polymers
  11. 7 Prediction of Gas Permeation Parameters of Polymers
  12. 8 Synthesis and Permeation Properties of Substituted Polyacetylenes for Gas Separation and Pervaporation
  13. 9 Gas and Vapor Transport Properties of Perfluoropolymers
  14. 10 Structure and Transport Properties of Polyimides as Materials for Gas and Vapor Membrane Separation
  15. 11 The Impact of Physical Aging of Amorphous Glassy Polymers on Gas Separation Membranes
  16. 12 Zeolite Membranes for Gas and Liquid Separations
  17. 13 Gas and Vapor Separation Membranes Based on Carbon Membranes
  18. 14 Polymer Membranes for Separation of Organic Liquid Mixtures
  19. 15 Zeolite Membranes for Pervaporation and Vapor Permeation
  20. 16 Solid-State Facilitated Transport Membranes for Separation of Olefins/Paraffins and Oxygen/Nitrogen
  21. 17 Review of Facilitated Transport Membranes
  22. Index