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Solar hydrogen production by the Hybrid Sulfur process

机译:混合硫法生产太阳能氢

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A conceptual design and economic analysis are presented for a hydrogen production plant based on the use of thermochemical water splitting combined with a solar central receiver. The reference design consists of a Hybrid Sulfur thermochemical process coupled to a solar plant, based on the particle receiver concept, for a yearly average hydrogen production rate of 100 tons per day. The Hybrid Sulfur plant has been designed on the basis of results obtained from a new flowsheet ASPEN Plus? simulation, carrying out specific evaluations for the Sulfur dioxide Depolarized Electrolyzer, being developed and constructed at Savannah River National Laboratory, and for the sulfuric acid decomposition bayonet-based reactor, investigated at Sandia National Laboratory. Solar hydrogen production costs have been estimated considering two different scenarios in the medium to long term period, assuming the financing and economic guidelines from DOE's H2A model and performing ad hoc detailed evaluations for unconventional equipment. A minimum hydrogen production specific cost of 3.19 $/kg (2005 US $) has been assessed for the long term period. The costs, so obtained, are strongly affected by some quantities, parameters and assumptions, influence of which has also been investigated and discussed.
机译:基于热化学水分解法与太阳能中央接收器的结合,对制氢厂进行了概念设计和经济分析。该参考设计由基于颗粒接收器概念的混合硫热化学工艺与太阳能发电厂相结合构成,年平均氢气产量为每天100吨。混合硫工厂的设计基于从新流程ASPEN Plus获得的结果。模拟,对在萨凡纳河国家实验室开发和建造的二氧化硫去极化电解槽以及在桑迪亚国家实验室进行的硫酸分解刺刀式反应器进行了具体评估。考虑到中长期的两种不同情况,估计了太阳能制氢的成本,假设采用了能源部H2A模型的融资和经济指导方针,并对非常规设备进行了专门的详细评估。长期以来,最低制氢成本为3.19美元/千克(2005年美元)。如此获得的成本受到一些数量,参数和假设的强烈影响,还对其影响进行了研究和讨论。

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