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Inorganic Membranes for Energy And Environmental Applications

Inorganic Membranes for Energy And Environmental Applications
Author
Bose, Arun Chand (EDT) 
Publisher
Springer-Verlag 
Publication Date
Oct, 2008 
ISBN
0387345248 or 9780387345246
HARDCOVER 
319 Pages
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¥ 17,319 (tax included)

Description

Research interest in inorganic membrane materials and processes has significantly increased in recent years due to novel, potentially low-cost energy and fuel production applications. This book documents the recent progress in membrane science, especially in advanced materials and novel reaction and separation concepts. The book classifies membranes based on the mechanism of operation, i.e., size exclusion filtration, solution-diffusion, and mixed ion-electron conduction of the permeate streams.

Contents

Part I Ion Transport Membranes and Ceramic-Metal Membranes

1 Progress in Ion Transport Membranes for Gas Separation Applications
Arun C. Bose, Gary J. Stiegel, Phillip A. Armstrong, Barry J. Halper, and E. P. (Ted) Foster

2 Viability of ITM Technology for Oxygen Production and Oxidation Processes: Material, System, and Process Aspects
Marcel J. den Exter, Wim G. Haije, and Jaap F. Vente

3 Oxygen-Ion Transport Membrane and Its Applications in Selective Oxidation of Light Alkanes
Weishen Yang and Rui Cai

4 Ceramic Membrane Devices for Ultra-High Purity Hydrogen Production: Mixed Conducting Membrane Development
S. Elangovan, B. Nair, T. Small, B. Heck, I. Bay, M. Timper, J. Hartvigsen, and M. Wilson

5 Decomposition of Yttrium-Doped Barium Cerate in Carbon Dioxide
Theodore M. Besmann, Robert D. Carneim, and Timothy R. Armstrong

6 Mixed-Conducting Perovskite Reactor for High-Temperature Applications: Control of Microstructure and Architecture
Gregory Etchegoyen, Thierry Chartier, Alain Wattiaux, and Pascal Del Gallo

7 Mixed Protonic-Electronic Conducting Membrane for Hydrogen Production from Solid Fuels
Shain J. Doong, Francis Lau, and Estela Ong

Part II Metal and Alloy Membranes

8 Hydrogen Separation Using Dense Composite Membranes:
Part 1: Fundamentals
Michael V. Mundschau

9 Hydrogen Separation Using Dense Composite Membranes
Part 2: Process Integration and Scale-Up for H2 Production and CO2 Sequestration
David H. Anderson, Carl R. Evenson IV, Todd H. Harkins, Douglas S. Jack, Richard Mackay, and Michael V. Mundschau

10 Gasification and Associated Degradation Mechanisms Applicable to Dense Metal Hydrogen Membranes
Bryan Morreale, Jared Ciferno, Bret Howard, Michael Ciocco John Marano, Osemwengie Iyoha, and Robert Enick

11 Un-supported Palladium Alloy Membranes for the Production of Hydrogen
Bruce R. Lanning, Omar Ishteiwy, J. Douglas Way, David Edlund, and Kent Coulter

12 Palladium-Copper and Palladium-Gold Alloy Composite Membranes for Hydrogen Separations
Fernando Roa, Paul M. Thoen, Sabina K. Gade, J. Douglas Way, Sarah DeVoss, and Gokhan Alptekin

13 Composite Pd and Pd/Alloy Membranes
Yi Hua Ma

14 Model-Based Design of Energy Efficient Palladium Membrane Water Gas Shift Fuel Processors for PEM Fuel Cell Power Plants
Mallika Gummalla, Thomas Henry Vanderspurt, Sean Emerson, Ying She, Zissis Dardas, and Benoニ1t Olsommer

Part III Porous, Silica and Zeolite Membranes

15 Zeolite Membranes
Weishen Yang and Yanshuo Li

16 Advanced Materials and Membranes for Applications in Hydrogen and Energy Production
Balagopal N. Nair, Y. Ando, and H. Taguchi

17 Catalytic Dehydrogenation of Ethane in Hydrogen Membrane Reactor
Jan Galuszka, Terry Giddings, and Ian Clelland

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