Inorganic membranes for energy and environmental applications (New York, 2009). - ОГЛАВЛЕНИЕ / CONTENTS
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ОбложкаInorganic membranes for energy and environmental applications / ed. by A.C.Bose. - New York: Springer, 2009. - xiv, 319 p.: ill. - Incl. bibl. ref. - Ind.: p.313-319. - ISBN 978-0-387-34524-6
 

Оглавление / Contents
 
Part I  Ion Transport Membranes and Ceramic-Metal Membranes

1  Progress in Ion Transport Membranes for Gas Separation
   Applications ................................................. 3
   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 ..................................................... 27
   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 ........................ 53
   Weishen Yang and Rui Cai
4  Ceramic Membrane Devices for Ultra-High Purity Hydrogen
   Production: Mixed Conducting Membrane Development ........... 67
   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 ..................................................... 83
   Theodore M. Besmann, Robert D. Carneim, and Timothy 
   R. Armstrong
6  Mixed-Conducting Perovskite Reactor for High-Temperature
   Applications: Control of Microstructure and Architecture .... 95
   Gregory Etchegoyen, Thierry Chartier, Alain Wattiaux,
   and Pascal Del Gallo
7  Mixed Protonic-Electronic Conducting Membrane for
   Hydrogen Production from Solid Fuels ....................... 107
   Shain J. Doong, Francis Lau, and Estela Ong

Part II Metal and Alloy Membranes

8  Hydrogen Separation Using Dense Composite Membranes:
   Part 1 Fundamentals ........................................ 125
   Michael V. Mundschau
9  Hydrogen Separation Using Dense Composite Membranes  
   Part 2: Process Integration and Scale-Up for H2
   Production and CO2 Sequestration ........................... 155
   David H. Anderson, Carl R. Evenson I.V., Todd H. Harkins,
   Douglas S. Jack, Richard Mackay, and Michael V. Mundschau
10 Gasification and Associated Degradation Mechanisms
   Applicable to Dense Metal Hydrogen Membranes ............... 173
   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 ................................................ 203
   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 ......................... 221
   Fernando Roa, Paul M. Thoen, Sabina K. Gade, J. Douglas
   Way, Sarah DeVoss, and Gokhan Alptekin
13 Composite Pd and Pd/AIloy Membranes ........................ 241
   Yi Hua Ma
14 Model-Based Design of Energy Efficient Palladium Membrane
   Water Gas Shift Fuel Processors for РЕМ Fuel Cell Power
   Plants ..................................................... 255
   Mallika Gummalla, Thomas Henry Vanderspurt, Sean Emerson,
   Ying She, Zissis Dardas, and Benoît Olsommer

Part III Porous, Silica and Zeolite Membranes

15 Zeolite Membranes .......................................... 275
   Weishen Yang and Yanshuo Li
16 Advanced Materials and Membranes for Applications in
   Hydrogen and Energy Production ............................. 287
   Balagopal N. Nair, Y. Ando, and H. Taguchi
17 Catalytic Dehydrogenation of Ethane in Hydrogen Membrane
   Reactor .................................................... 299
   Jan Galuszka, Terry Giddings, and Ian Clelland

Index ......................................................... 313


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