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Nuclear Science
Nuclear Production of Hydrogen
Third Information Exchange Meeting, Oarai, Japan, 5-7 October 2005
OECD. Published by : OECD Publishing
Version: Print (Paperback) + Free PDF
Price:   €80 | $108 | £57 | ¥11100 | 
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Imprint:  Nuclear Energy Agency Availability: Available  Publication date:  20 Jul 2006  Language: English  Pages: 414  ISBN: 9789264026292  OECD Code: 662006081P1 
 

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Hydrogen has the potential to play an important role as a sustainable and environmentally acceptable energy carrier in the 21st century. Since natural sources of pure hydrogen are extremely limited, it is necessary to develop technologies to produce large quantities of hydrogen economically. The currently dominant technology for producing hydrogen is based on reforming fossil fuels, a process which releases greenhouse gases. Hydrogen produced by water cracking, using heat and surplus electricity from nuclear power plants, requires no fossil fuels and results in lower greenhouse gas emissions. This conference proceedings presents the state of the art in the nuclear production of hydrogen and describes its associated scientific and technical challenges.

Other Versions:  E-book - PDF Format


Table of contents:

Foreword
Opening Session
-Welcome Address by Thierry Dujardin
-Opening Remark by Osamu Oyamada
Session I. The Prospects for Hydrogen in Future Energy Structures and Nuclear Power’s Role. Chair: M.C. Petri
-Synergy of Fossil Fuels and Nuclear Energy for the Energy Future by M. Hori, M. Numata, T. Amaya, Y. Fujimura
-Can Nuclear Power Complete in the Hydrogen Economy? by G. Rothwell, E. Bertel, K. Williams
-Future Plan on Environmentally Friendly Hydrogen Production by Nuclear Energy by S. Shiozawa, M. Ogawa, R. Hino
Session II. The Status of Nuclear Hydrogen Research and Development Efforts around the Globe. Chair: M. Methnani, W.A. Summers
-Research and Development For Nuclear Production of Hydrogen in Japan by M. Hori, S. Shiozawa
-The U.S. Department of Energy Research and Development Programme on Hydrogen Production Using Nuclear Energy by A.D. Henderson, A. Taylor
-An Overview of the CEA Roadmap for Hydrogen Production by F. Le Naour
-R&D Effort on Nuclear Hydrogen Production Technology in China Y. Sun, J. Xu, Z. Zhang
-An Update on Canadian Activities on Hydrogen by A.I. Miller
-Nuclear Hydrogen Production Project in Korea by Y-J. Shin, J-H. Kim, J. Chang, W-S. Park, J. Park
-Michelangelo Network Recommendations on Nuclear Hydrogen Production by K. Verfondern, W. von Lensa
Session III. Integrated Nuclear Hydrogen Production Systems. Chairs: A. Miller, K. Verfondern
-GTHTR300 Design Variants for Production of Electricity, Hydrogen or Both by X. Yan, K. Kunitomi, R. Hino and S. Shiozawa
-H2-MHR Conceptual Designs Based on the SI Process and HTE by M. Richards, A. Shenoy, K. Schultz, L. Brown, E. Harvego, M. Mc Kellar, J.P. Coupey, S.M. Moshin Reza, F. Okamoto, N. Handa
-Coupling a Hydrogen Production Process to a Nuclear Reactor by P. Anzieu, P. Aujollet, D. Barbier, A. Bassi, F. Bertrand, A. Le Duigou, J. Leybros, G.Rodriguez
-HTTR Test Programme Towards Coupling with the IS Process by T. Iyoku, N. Sakaba, S. Nakagawa, Y. Tachibana, S. Kasahara, K. Kawasaki
-Current Status of Research and Development on System Integration Technology for Connection Between HTGR and Hydrogen Production System at JAEA by H. Ohashi, Y. Inaba, T. Nishihara, T. Takeda, K. Hayashi Y. Inagaki
Session IV. Nuclear Hydrogen Technologies and Design Concepts. Chairs: K. Kunitomi, J.S. Herring, Y.S. Shin, T. Takeda
-Study on Thermochemical Iodine-Sulfur Process at JAEA by K. Onuki, S. Kubo, A. Terada, N. Sakaba, R. Hino
-Studies on Continuous and Closed Cycle Hydrogen Production by a Thermochemical Water-Splitting Iodine-Sulfur Process by S. Kubo, S. Shimizu, H. Nakajima, K. Onuki
-Experimental and Analytical Results on H2SO4 and SO3 Decomposers for IS Process Pilot Plant by A. Terada, Y. Imai, H. Noguchi, H. Ota, A. Kanagawa, S. Ishikura, S. Kubo, J.Iwatsuki, K. Onuki, R. Hino
-A Scoping Flowsheet Methodology for Evaluating Alternative Thermochemical Cycles by M.A. Lewis, M.C. Petri, J.G. Masin
-Study of the Hybrid Cu-Cl Cycle for Nuclear Hydrogen Production by S. Suppiah, J. Li, R. Sadhankar, K.J. Kutchcoskie, M. Lewis
-Preliminary Process Analysis and Simulation of the Copper-Chlorine Thermochemical Cycle for Hydrogen Generation by M. Arif Khan, Y. Chen
-Development of the Hybrid Sulfur Thermochemical Cycle by W.A. Summers, J.L. Steimke
-The Sulfur-Iodine and Others Thermochemical Processes Studies at CEA by P. Anzieu, P. Carles, A. Le Duigou, X. Vitart, F. Lemort
-A Study on Hydrogen Production by Thermochemical Water-splitting IS (Iodine-Sulfur) Process by K-K. Bae, K-S. Kang, S-D. Hong, C-S. Park, C-H. Kim, S-H. Lee, G-J. Hwang
-Present Research Status and Development Plan of Nuclear Hydrogen Production Programme in INET by P. Zhang, B. Yu, L. Zhang, J. Chen, J. Xu
-Development of the Thermochemical and Electrolytic Hybrid Hydrogen Production Process for Sodium Cooled FBR by T. Nakagiri, T. Kase, S. Kato, K. Aoto
-Progress in High-temperature Electrolysis for Hydrogen Production by J.S. Herring, J.E. O’Brien, C.M. Stoots, G.L. Hawkes, P. Lessing, W. Windes, D. Wendt, M. Mc Kellar, M. Sohal, J.J. Hartvigsen
-Possibility of a Chemical Hydrogen Carrier System Based on Nuclear Power by Y. Kato
Session V. Basic and Applied Science in Support of Nuclear Hydrogen Production. Chairs: Y. Kato, P. Anzieu, Y. Sun
-A Study on the HI Concentration by Polymer Electrolyte Membrane Electrodialysis by C-H. Kim, B-K. Kim, K-S. Kang, C-S. Park, S-H. Lee, S-D. Hong, G-J. Hwang, K-K. Bae
-The Preparation Characteristics of Hydrogen Permselective Membrane for Higher Performance in IS Process of Nuclear Hydrogen Production by H-S. Choi, G-J. Hwang, C-S. Park, H-J. Kim, K-K. Bae
-Thermal Decomposition of SO3 by H. Karasawa, A. Sasahira, K. Hoshino
-Direct Energy Conersion by Proton-Conducting Ceramic Fuel Cell Supplied with CH4 and H2O at 600-800°C byS. Fukada, S. Suemori, K. Onoda
-Separation and Utilisation of Rare Metal Fission Products in Nuclear Fuel Cycle as for Hydrogen Production Catalysts? by M.Ozawa, R. Fujita, T. Suzuki, Y. Fujii
-Electrical Conductive Perovskite Anodes in Sulfur-based Hybrid Cycle by H. Kawamura, M. Mori, S-Z. Chu, M. Uotani
-Generation of H2 by Decomposition of Pulp in Supercritical Water with Ruthenium (IV) Oxide Catalyst by Y. Izumizaki, K-C. Park, Y. Tachibana, H. Tomiyasu, Y. Fujii
Session Summaries
Recommendations

Annex A. List of Participants
Annex B. Meeting Organisation
Annex C. Additional Presentations to the Second HTTR Workshop

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