Development of a New Thermochemical and Electrolytic Hybrid Hydrogen Production System for Sodium Cooled FBR(<Special Issue>International Conferences on Power and Energy)
スポンサーリンク
概要
- 論文の詳細を見る
A new thermo-chemical and electrolytic hybrid hydrogen production system in lower temperature range is newly proposed by the Japan Nuclear Cycle Development Institute (JAEA) to realize the hydrogen production from water by using the heat generation of sodium cooled Fast Breeder Reactor (FBR). The system is based on sulfuric acid (H_2SO_4) synthesis and decomposition process developed earlier (Westinghouse process), and sulfur trioxide (SO_3) decomposition process is facilitated by electrolysis with ionic oxygen conductive solid electrolyte to reduce the operation temperature 200-300℃ lower than Westinghouse process. SO_3 decomposition with the voltage lower than 0.5V was confirmed in the temperature range of 500 to 600℃ and theoretical thermal efficiency of the system evaluated based on chemical reactions was within the range of 35% to 55% under the influence of H_2SO_4 concentration and heat recovery. Furthermore, hydrogen production experiments to substantiate the whole process were performed. Stable hydrogen and oxygen production were observed in the experiments, and maximum duration of the experiments was about 5 hours.
- 一般社団法人日本機械学会の論文
- 2006-05-15
著者
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Aoto Kazumi
Advanced Nuclear System Research And Development Directorate Japan Atomic Energy Agency
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Kase Takeshi
Tokai Research And Development Center Japan Atomic Energy Agency
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Kato Shoichi
Advanced Nuclear System Research And Development Directorate Japan Atomic Energy Agency
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NAKAGIRI Toshio
Advanced Nuclear System Research and Development Directorate, Japan Atomic Energy Agency
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Nakagiri Toshio
Advanced Nuclear System Research And Development Directorate Japan Atomic Energy Agency