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A Novel Two-Step Metal Oxide - Metal Sulfate Water Splitting Cycle for the Production of Solar Hydrogen

机译:用于生产太阳能氢的新型两步金属氧化物 - 金属硫酸盐水分裂循环

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This paper reports the thermodynamic analysis of solar H2 production via two-step thermochemical Strontium oxide - Strontium Sulfate (SO-SS) water splitting cycle. The first step belongs to the exothermic oxidation of SrO via SO2 and H2O producing SrSO4 and H2 and second step corresponds to the endothermic reduction of SrSO4 into FeO, SO2, and O2. The products, SrO and SO2 can be recycled to step 1 and hence, reutilized for the production of H2 via water splitting reaction. Thermodynamic equilibrium compositions of the thermal reduction and water splitting reactions were computed as a function of reaction temperatures. Second law thermodynamic analysis was performed to determine the cycle efficiency and solar to fuel energy conversion efficiency attainable without heat recuperation.
机译:本文通过两步热化学氧化锶 - 硫酸锶(SO-SS)水分裂循环,报道了太阳能H2生产热力学分析。第一步属于SRO4和H 2 O的SrSO4和H 2和第二步骤对应于SRSO4进入FeO,SO 2和O 2的再热量还原。产品,SrO和SO2可以再循环到步骤1,因此,通过水分解反应再利用H 2的生产。作为反应温度的函数计算热量降低和水分裂反应的热力平衡组合物。进行第二律进行热力学分析,以确定循环效率和太阳能,以燃料能量转换效率可达,无需热回收。

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