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首页> 外文期刊>Energy & environmental science >A prototype reactor for highly selective solar-driven CO2 reduction to synthesis gas using nanosized earth-abundant catalysts and silicon photovoltaics
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A prototype reactor for highly selective solar-driven CO2 reduction to synthesis gas using nanosized earth-abundant catalysts and silicon photovoltaics

机译:一种原型反应器,用于使用纳米级地球富集催化剂和硅光伏技术,将太阳能驱动的二氧化碳选择性选择性还原为合成气

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摘要

The conversion of carbon dioxide (CO2) into value-added chemicals and fuels, preferably using renewable energy and earth-abundant materials, is considered a key priority for future energy research. In this work, a biasfree reactor device for the solar-driven conversion of CO2 to synthesis gas (syngas) has been developed. The integrated fluidic device consists of a cathode made of copper foam coated with low-cost nanosized zinc flakes as catalyst to perform the CO2 reduction reaction (CO2RR) to syngas, an adapted silicon heterojunction solar cell structure as photoanode with nickel foam as catalyst to facilitate the oxygen evolution reaction (OER), and a bipolar membrane separating the respective catholyte and anolyte compartments. The membrane allows for the operation of the catholyte and anolyte at different pH values. Stable and tunable hydrogen-to-carbon monoxide (H-2 : CO) ratios between 5 and 0.5 along with high CO Faradaic efficiencies of up to 85% and CO current densities of 39.4 mA cm(-2) have been demonstrated. Under photoelectrolysis conditions, the photovoltage of the photoanode was varied between 0.6 V and 2.4 V by connecting up to four heterojunction solar cells in series, and thus reducing the overall cell voltage solely by solar energy utilization. Bias-free operation of the integrated device has been achieved under ambient conditions with active areas for CO2RR and OER, respectively, of 10 cm(2). An operation current density of 5.0 mA cm(-2) was measured under 100 mW cm(-2) illumination of the complete device, which corresponds to a solar-to-syngas conversion efficiency of 4.3%.
机译:将二氧化碳(CO2)转化为增值化学品和燃料,最好使用可再生能源和富含地球的材料,被认为是未来能源研究的重点。在这项工作中,已经开发出了一种用于太阳能驱动的将CO2转化为合成气(合成气)的无偏压反应器装置。集成的流体装置包括一个由泡沫铜制成的阴极,该阴极涂有低成本纳米尺寸的锌片作为催化剂,以进行CO2还原反应(CO2RR)生成合成气;一种适应性的硅异质结太阳能电池结构作为光阳极,以镍泡沫为催化剂,以方便氧气放出反应(OER),以及分隔各自的阴极电解液和阳极电解液隔室的双极膜。该膜允许阴极液和阳极液在不同的pH值下运行。已证明氢与一氧化碳(H-2:CO)的比例稳定且可调,介于5和0.5之间,以及高达85%的高CO法拉第效率和39.4 mA cm(-2)的CO电流密度。在光电解条件下,通过最多串联四个异质结太阳能电池,光阳极的光电压在0.6 V至2.4 V之间变化,因此仅通过太阳能利用就可以降低总电池电压。集成设备在环境条件下的无偏置操作已经实现,CO2RR和OER的有效面积分别为10 cm(2)。在整个设备的100 mW cm(-2)照明下测量的工作电流密度为5.0 mA cm(-2),对应于4.3%的太阳能到合成气的转换效率。

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  • 来源
    《Energy & environmental science 》 |2017年第10期| 2256-2266| 共11页
  • 作者单位

    IREC, Catalonia Inst Energy Res, Jardins Dones Negre 1, Barcelona 08930, Catalonia, Spain;

    IREC, Catalonia Inst Energy Res, Jardins Dones Negre 1, Barcelona 08930, Catalonia, Spain|CSIC, Catalan Inst Nanosci & Nanotechnol ICN2, Campus UAB, Barcelona 08193, Catalonia, Spain|BIST, Campus UAB, Barcelona 08193, Catalonia, Spain;

    IREC, Catalonia Inst Energy Res, Jardins Dones Negre 1, Barcelona 08930, Catalonia, Spain;

    IREC, Catalonia Inst Energy Res, Jardins Dones Negre 1, Barcelona 08930, Catalonia, Spain|Univ Barcelona, Marti & Franques 1, E-08028 Barcelona, Catalonia, Spain;

    Univ Politecn Cataluna, Elect Engn Dept, Jordi Girona 1-3, ES-08034 Barcelona, Catalonia, Spain;

    CSIC, Catalan Inst Nanosci & Nanotechnol ICN2, Campus UAB, Barcelona 08193, Catalonia, Spain|BIST, Campus UAB, Barcelona 08193, Catalonia, Spain|ICREA, Pg Lluis Companys 23, Barcelona 08010, Catalonia, Spain;

    IREC, Catalonia Inst Energy Res, Jardins Dones Negre 1, Barcelona 08930, Catalonia, Spain|Univ Barcelona, Marti & Franques 1, E-08028 Barcelona, Catalonia, Spain;

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