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Review of the Two-Step H2O/CO2-Splitting Solar Thermochemical Cycle Based on Zn/ZnO Redox Reactions

机译:基于Zn / ZnO氧化还原反应的两步H 2 O / CO 2 分解太阳热化学循环研究进展

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This article provides a comprehensive overview of the work to date on the two‑step solar H2O and/or CO2 splitting thermochemical cycles with Zn/ZnO redox reactions to produce H2 and/or CO, i.e., synthesis gas—the precursor to renewable liquid hydrocarbon fuels. The two-step cycle encompasses: (1) The endothermic dissociation of ZnO to Zn and O2 using concentrated solar energy as the source for high-temperature process heat; and (2) the non-solar exothermic oxidation of Zn with H2O/CO2 to generate H2/CO, respectively; the resulting ZnO is then recycled to the first step. An outline of the underlying science and the technological advances in solar reactor engineering is provided along with life cycle and economic analyses.
机译:本文全面概述了迄今为止的两步太阳能H 2 O和/或CO 2 分解热化学循环与Zn / ZnO氧化还原反应以产生H 2 和/或CO,即合成气-可再生液态烃燃料的前体。两步循环包括:(1)使用集中的太阳能作为高温过程热的源,将ZnO吸热解离为Zn和O 2 。 (2)分别用H 2 O / CO 2 对Zn进行非太阳能放热氧化,生成H 2 / CO。然后将生成的ZnO循环到第一步。概述了太阳能堆工程的基础科学和技术进步,以及生命周期和经济分析。

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