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Palladium Membrane Technology for Hydrogen Production, Carbon Capture and Other Applications Principles, Energy Production and Other Applications

โœ Scribed by Doukelis, A.; Panopoulos, K.; Koumanakos, A.; Kakaras, E


Publisher
Woodhead Pub Ltd, , Elsevier Ltd
Year
2015
Tongue
English
Leaves
382
Series
Woodhead Publishing Series in Energy
Edition
1
Category
Library

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โœฆ Synopsis


Thanks to their outstanding hydrogen selectivity, palladium membranes have attracted extensive R&D interest. They are a potential breakthrough technology for hydrogen production and also have promising applications in the areas of thermochemical biorefining. This book summarises key research in palladium membrane technologies, with particular focus on the scale-up challenges. After an introductory chapter, Part one reviews the fabrication of palladium membranes. Part two then focuses on palladium membrane module and reactor design. The final part of the book reviews the operation of palladium membranes for synthesis gas/hydrogen production, carbon capture and other applications.

โ€ข Review of manufacture and design issues for palladium membranes โ€ข Discussion of the applications of palladium membrane technology, including solar steam reforming, IGCC plants, NGCC plants, CHP plants and hydrogen production โ€ข Examples of the technology in operation

โœฆ Table of Contents


Content:
Front matter, Pages i-iii
Copyright, Page iv
List of contributors, Pages xi-xii, K. Atsonios, R. Bredesen, B. Cucchiella, M.J. den Exter, A. Doukelis, F. Gallucci, M. Gazzani, A. Giaconia, G. Iaquaniello, E. Kakaras, H. Kurokawa, A.K. Koumanakos, M.A. Llosa Tanco, G. Manzolini, J.C. Morud, J. Okazaki, D.A. Pacheco Tanaka, E. Palo, K.D. Panopoulos, T.A. Peters, H. Richter, et al.
Woodhead Publishing Series in Energy, Pages xiii-xvii
1 - Introduction to palladium membrane technology, Pages 1-21, K. Atsonios, K.D. Panopoulos, A. Doukelis, A.K. Koumanakos, E. Kakaras, T.A. Peters, Y.C. van Delft
2 - Fabrication of palladium-based membranes by magnetron sputtering, Pages 25-41, T.A. Peters, M. Stange, R. Bredesen
3 - The use of electroless plating as a deposition technology in the fabrication of palladium-based membranes, Pages 43-67, M.J. den Exter
4 - Large-scale ceramic support fabrication for palladium membranes, Pages 69-82, H. Richter
5 - Fabrication of supported palladium alloy membranes using electroless plating techniques, Pages 83-99, D.A. Pacheco Tanaka, J. Okazaki, M.A. Llosa Tanco, T.M. Suzuki
6 - Development and application of self-supported palladium membranes, Pages 101-152, S. Tosti
7 - Testing palladium membranes: methods and results, Pages 153-166, G. laquaniello, E. Palo, A. Salladini, B. Cucchiella
8 - Criteria for palladium membrane reactor design: architecture, thermal effects and autothermal design, Pages 167-191, M. Sheintuch
9 - Simulation of palladium membrane reactors: a simulator developed in the CACHET-II project, Pages 193-211, J.C. Morud
10 - Palladium membranes in solar steam reforming, Pages 215-220, A. Giaconia
11 - Using palladium membranes for carbon capture in integrated gasification combined cycle (IGCC) power plants, Pages 221-246, M. Gazzani, G. Manzolini
12 - Using palladium membranes for carbon capture in natural gas combined cycle (NGCC) power plants: process integration and techno-economics, Pages 247-285, K. Atsonios, A.K. Koumanakos, K.D. Panopoulos, A. Doukelis, E. Kakaras
13 - Using palladium membrane reformers for hydrogen production, Pages 287-301, G. Iaquaniello, E. Palo, A. Salladini, B. Cucchiella
14 - Operation of a palladium membrane reformer system for hydrogen production: the case of Tokyo Gas, Pages 303-318, H. Yakabe, H. Kurokawa, Y. Shirasaki, I. Yasuda
15 - Using palladium membrane-based fuel reformers for combined heat and power (CHP) plants, Pages 319-344, F. Gallucci, M. van Sint Annaland, L. Roses, G. Manzolini
16 - Review of palladium membrane use in biorefinery operations, Pages 345-368, K. Atsonios, K.D. Panopoulos, A. Doukelis, E. Kakaras
Index, Pages 369-383


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