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Study on hydrogen production from steam electrolysis in LHD-type power reactor FFHR

机译:LHD型动力堆FFHR中蒸汽电解制氢的研究

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To assess the technical potential of the FFHR operation style, dedicated hydrogen production from electrolysis by the electric power of 1 GW is investigated in this report. Gaseous hydrogen of 700 tons per day can be produced. The steam of 6354 tons per day at 150 ℃ is necessary in this case. In FFHR, about 450 MW of thermal power is delivered via the scrape-off layer plasma to the divertors with double-null structure. The divertor may be one of the potential heat sources to produce the steam for the electrolysis. Hydrogen has to be packaged by compression or liquefaction, transported by trailer or pipeline, stored, and transferred to the end users. The four different styles of plant outputs were investigated: (A) 1 GW of power generation, (B) pressurized hydrogen gas of 625 tons per day, (C) liquid hydrogen of 574 tons per day, and (D) 0.824 GW of electricity plus 100 tons per day of liquid hydrogen.
机译:为了评估FFHR操作方式的技术潜力,在本报告中研究了1 GW电力电解产生的专用氢气。每天可产生700吨的气态氢。在这种情况下,每天需要在150℃下产生6354吨的蒸汽。在FFHR中,约450兆瓦的热功率通过刮除层等离子体传递到具有双零结构的分流器。分流器可以是产生用于电解的蒸汽的潜在热源之一。氢气必须通过压缩或液化包装,通过拖车或管道运输,储存并转移给最终用户。研究了四种不同类型的工厂输出:(A)1 GW的发电量,(B)625吨/天的加压氢气,(C)574吨/天的液氢,和(D)0.824 GW的电力加上每天100吨的液态氢。

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