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A SYSTEM DESIGN STUDY OF A FAST BREEDER REACTOR HYDROGEN PRODUCTION PLANT USING THERMOCHEMICAL AND ELECTROLYTIC HYBRID PROCESS

机译:利用热化学和电解混合过程的快速育种反应器制氢厂的系统设计研究

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摘要

Hydrogen production with a fast breeder reactor (FBR) may be attractive as a long-term energy source with nuclear fuel breeding. The thermochemical and electrolytic hybrid process is one of the hydrogen production methods using a sulfuric acid cycle with the maximum temperature at 500℃, which can be supplied by a sodium-cooled FBR. In this study, a hydrogen production plant with the thermochemical and electrolytic hybrid process has been designed, and the hydrogen production efficiency has been evaluated. The structural materials of the components in the system are steels such as high-Si cast iron, which has good toughness against sulfuric acid. High hydrogen production efficiency of 44% (high heating value) is achieved assuming development of high-efficiency electrolysis.
机译:快速增殖反应堆(FBR)的氢气生产作为核燃料育种的长期能源可能很有吸引力。热化学和电解混合工艺是利用最高温度为500℃的硫酸循环的制氢方法之一,可以由钠冷FBR提供。在这项研究中,设计了具有热化学和电解混合工艺的制氢设备,并评估了制氢效率。系统中组件的结构材料是钢,例如高硅铸铁,对硫酸具有良好的韧性。假设发展了高效电解,则可以实现44%的高制氢效率(高发热量)。

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