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From the Cover: Low-cost high-efficiency system for solar-driven conversion of CO2 to hydrocarbons

机译:从封面开始:低成本高效系统用于太阳能驱动的将二氧化碳转化为碳氢化合物

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摘要

Conversion of carbon dioxide into hydrocarbons using solar energy is an attractive strategy for storing such a renewable source of energy into the form of chemical energy (a fuel). This can be achieved in a system coupling a photovoltaic (PV) cell to an electrochemical cell (EC) for CO2 reduction. To be beneficial and applicable, such a system should use low-cost and easily processable photovoltaic cells and display minimal energy losses associated with the catalysts at the anode and cathode and with the electrolyzer device. In this work, we have considered all of these parameters altogether to set up a reference PV–EC system for CO2 reduction to hydrocarbons. By using the same original and efficient Cu-based catalysts at both electrodes of the electrolyzer, and by minimizing all possible energy losses associated with the electrolyzer device, we have achieved CO2 reduction to ethylene and ethane with a 21% energy efficiency. Coupled with a state-of-the-art, low-cost perovskite photovoltaic minimodule, this system reaches a 2.3% solar-to-hydrocarbon efficiency, setting a benchmark for an inexpensive all–earth-abundant PV–EC system.
机译:使用太阳能将二氧化碳转化为碳氢化合物是将这种可再生能源存储为化学能(燃料)形式的一种有吸引力的策略。这可以在将光伏(PV)电池与电化学电池(EC)耦合以减少CO2的系统中实现。为了有益和适用,这样的系统应使用低成本且易于加工的光伏电池,并显示出与阳极和阴极处的催化剂以及电解装置相关的最小能量损失。在这项工作中,我们已经综合考虑了所有这些参数,从而建立了将二氧化碳还原为碳氢化合物的参考PV-EC系统。通过在电解器的两个电极上使用相同的原始高效铜基催化剂,并通过最大程度减少与电解器装置相关的所有能量损失,我们实现了将CO2还原为乙烯和乙烷的能源效率为21%。结合最先进的低成本钙钛矿光伏微型模块,该系统达到2.3%的太阳能转化效率,为廉价的全地球PV-EC系统树立了标杆。

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