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Aspects of Hydrogen Production Using a Supercritical Water-Cooled Nuclear Reactor

机译:使用超临界水冷核反应堆生产氢气的各个方面

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Thermochemical processes such as the copper chlorine (Cu-Cl) cycle decompose water to produce hydrogen as an alternative method to fossil fuel based production. An external energy source must be used to supply the high-temperature heat requirements of the cycle. Some Generation IV nuclear reactor design concepts operate at conditions which are sufficient to provide the necessary heat energy. Heat exchangers may provide an interface by which thermal energy is transferred from reactor coolant at 25 MPa and 625°C to a Cu-Cl based hydrogen-production facility. Characteristics of a connection between a nuclear power plant and a hydrogen production facility are discussed.
机译:作为基于化石燃料的生产的替代方法,诸如铜氯(Cu-Cl)循环等热化学过程会分解水以产生氢气。必须使用外部能源来提供循环所需的高温热量。某些第四代核反应堆设计概念在足以提供必要热能的条件下运行。热交换器可以提供界面,通过该界面将热能从反应堆冷却剂在25 MPa和625°C的温度下转移到基于Cu-Cl的制氢设施中。讨论了核电厂和制氢设施之间的连接特性。

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