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Solar hydrogen production via ZnO/Zn based thermochemical water splitting cycle: Effect of partial reduction of ZnO

机译:基于ZnO / Zn的热化学水分裂周期的太阳能氢气产生:ZnO部分减少的影响

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This investigation reports the examination of the influence of partial reduction of ZnO on the thermodynamic parameters allied with the ZnO/Zn WS cycle. The efficiency analysis was conducted by developing and following the ZnO/Zn process flow configuration. By estimating the equilibrium compositions, the percentage of ZnO reduction (ZnO-R) as a function of the thermal reduction (TR) temperature (T-H) was determined. After identifying the ZnO-R percentages, the influence T-H of and ZnO-R on the thermodynamic process parameters was explored. Overall results of the efficiency analysis indicate that the operation of the partially reduced ZnO/Zn WS cycle, in the temperature range of 1040 K-1240 K, was more useful rather than operating at 1340 K. ZnO-R equal to 57.2% (T-H = 1240 K) was favorable to operate the ZnO/Zn WS cycle as a further rise in the ZnO-R did not yield any significant improvement in the solar-to-fuel energy conversion efficiency. At ZnO-R equal to 57.2% (T-H = 1240 K), by applying 50% HR, a value of 62.6% as the efficiency of solar to fuel can be achieved. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本调查报告了检查ZnO部分减少对ZnO / ZN WS周期均齐的热力学参数的影响。通过开发和之后进行ZnO / Zn工艺流动配置进行效率分析。通过估计平衡组合物,测定作为热还原(Tr)温度(T-H)的函数的ZnO还原(ZnO-R)的百分比。在识别ZnO-R百分比后,探讨了热力学过程参数的影响和ZnO-R的影响。效率分析的总体结果表明,在1040k-1240k的温度范围内部分地减少的ZnO / Zn WS循环的操作更有用,而不是在1340k ZnO-R等于57.2%(TH) = 1240 k)有利于操作ZnO / Zn WS循环作为ZnO-R进一步升高,没有产生太阳能 - 燃料能量转换效率的任何显着改善。在ZnO-R等于57.2%(T-H = 1240 k),通过施加50%HR,可以​​实现82.6%的值,因为可以实现太阳能燃料的效率。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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