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A general survey of the potential and the main issues associated with the sulfur-iodine thermochemical cycle for hydrogen production using nuclear heat

机译:对利用核热生产氢的硫碘热化学循环的潜力和主要问题的一般调查

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The thermochemical sulfur-iodine cycle is studied by CEA with the objective of massive hydrogen production using nuclear heat at high temperature. The challenge is to acquire by the end of 2008 the necessary decision elements, based on a scientific and validated approach, to choose the most promising way to produce hydrogen using a generation IV nuclear reactor. Amongst the thermochemical cycles, the sulfur-iodine process remains a very promising solution in matter of efficiency and cost, versus its main competitor, conventional electrolysis. The sulfur-iodine cycle is a very versatile process, which allows lot of variants for each section which can be adjusted in synergy in order to optimise the whole process. The main part of CEA's program is devoted to the study of the basic processes: new thermodynamics data acquisition, optimisation of water and iodine quantity, optimisation of temperature and pressure in each unit of the flow-sheet and survey of innovative solutions (membrane separations for instance). This program also includes optimisation of a detailed flow-sheet and studies for a hydrogen production plant (design, scale, first evaluations of safety issues and technico-economic questions). This program interacts strongly with other teams, in the framework of international collaborations (Europe, USA for instance).
机译:CEA研究了热化学硫碘循环,其目的是利用高温下的核能大量生产氢。面临的挑战是,在2008年底之前,以科学和经过验证的方法来获得必要的决策要素,以选择使用IV代核反应堆生产氢的最有希望的方式。在热化学循环中,与碘的主要竞争者传统电解相比,硫碘工艺在效率和成本方面仍然是非常有前途的解决方案。硫碘循环是一个非常通用的过程,它允许每个部分有很多变体,可以协同调整这些变体以优化整个过程。 CEA计划的主要部分致力于基本过程的研究:新的热力学数据采集,水和碘量的优化,工艺流程各单元中温度和压力的优化以及创新解决方案的调查(膜分离实例)。该计划还包括优化详细的流程图和对制氢厂的研究(设计,规模,对安全问题和技术经济问题的首次评估)。该计划在国际合作的框架内(例如,欧洲,美国)与其他团队进行了强有力的互动。

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