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A pilot test plan of the thermochemical water-splitting iodine-sulfur process

机译:热化学水分解碘硫工艺的中试计划

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Research and development (R&D) of hydrogen production systems using high-temperature gas-cooled reactors (HTGR) are being conducted by the Japan Atomic Research Institute (JAERI). To develop the systems, superior hydrogen production methods are essential. The thermochemical hydrogen production cycle, the IS (iodine-sulfur) process, is a prospective candidate, in which heat supplied by HTGR can be consumed for the thermal driving load. With this attractive feature, JAERI will conduct pilot-scale tests, aiming to establish technical bases for practical plant designs using HTGR. The hydrogen will be produced at a maximum rate of 30 m~3/h, continuously using high-temperature helium gas supplied by a helium gas loop, with an electric heater of about 400 kW. The plant will employ an advanced hydroiodic acid-processing device for efficient hydrogen production, and the usefulness of the device was confirmed from mass and heat balance analysis. Through design works and the hydrogen production tests, valuable data for construction and operation will be acquired to evaluate detailed process performance for practical systems. After completing the pilot-scale tests, JAERI will move onto the next R&D step, which will be demonstrations of the IS process to which heat is supplied from a high-temperature engineering test reactor (HTTR).
机译:日本原子研究所(JAERI)正在进行使用高温气冷反应堆(HTGR)的制氢系统的研究与开发(R&D)。为了开发该系统,优质的制氢方法必不可少。热化学制氢循环(IS(碘硫)工艺)是一个有前途的候选方案,其中HTGR提供的热量可用于热驱动负荷。凭借这一吸引人的功能,JAERI将进行中试规模的测试,旨在为使用HTGR的实际工厂设计建立技术基础。连续使用由氦气回路提供的高温氦气和约400 kW的电加热器,将以最大30 m〜3 / h的速度产生氢气。该工厂将使用先进的氢碘酸处理设备来高效制氢,该设备的实用性已通过质量和热量平衡分析得到证实。通过设计工作和制氢测试,将获得有关建设和运营的宝贵数据,以评估实际系统的详细过程性能。完成中试规模的测试后,JAERI将进入下一步的研发步骤,这将是IS过程的演示,IS过程是由高温工程测试反应堆(HTTR)为其提供热量的。

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