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Conceptual design of hydrogen production system with thermochemical water-splitting iodine-sulphur process utilizing heat from the high-temperature gas-cooled reactor HTTR

机译:利用高温气冷反应堆HTTR产生的热量进行热化学水分解碘硫制氢系统的概念设计

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摘要

Japan Atomic Energy Agency (JAEA) has launched the preliminary design of a hydrogen production system based on Japan's first high-temperature gas-cooled reactor high temperature engineering test reactor (HTTR) since 2005. The selected method of hydrogen production is the thermochemical water-splitting iodine-sulphur (IS) process. The conceptual design of the HTTR-IS system is described in this paper. Using the secondary helium loop of the HTTR for coupling the hydrogen production system to the reactor, the possibility of constructing the IS process as a non-nuclear grade or conventional chemical plant is investigated for the available structure of the HTTR-IS system and the proposed heat mass balance. A hydrogen production rate of about 1100Nm~3/h and a thermal efficiency of 44% are shown in the process flowsheet evaluation for the HTTR-IS system.
机译:自2005年以来,日本原子能机构(JAEA)已启动了基于日本首个高温气冷堆高温工程试验反应堆(HTTR)的制氢系统的初步设计。制氢的选定方法是热化学水-分裂碘硫(IS)过程。本文介绍了HTTR-IS系统的概念设计。使用HTTR的次级氦气回路将制氢系统耦合到反应器,对于HTTR-IS系统的可用结构,研究了将IS工艺构造为无核级或常规化工厂的可能性,并提出了热质量平衡。在HTTR-IS系统的工艺流程图评估中,制氢速率约为1100Nm〜3 / h,热效率为44%。

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