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Hybrid photosynthesis-powering biocatalysts with solar energy captured by inorganic devices

机译:由无机装置捕获的具有太阳能的混合光合作用生物催化剂

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摘要

The biological reduction of CO2 driven by sunlight via photosynthesis is a crucial process for life on earth. However, the conversion efficiency of solar energy to biomass by natural photosynthesis is low. This translates in bioproduction processes relying on natural photosynthesis that are inefficient energetically. Recently, hybrid photosynthetic technologies with the potential of significantly increasing the efficiency of solar energy conversion to products have been developed. In these systems, the reduction of CO2 into biofuels or other chemicals of interest by biocatalysts is driven by solar energy captured with inorganic devices such as photovoltaic cells or photoelectrodes. Here, we explore hybrid photosynthesis and examine the strategies being deployed to improve this biotechnology.
机译:通过光合作用,阳光驱动的二氧化碳的生物还原是地球生命的关键过程。然而,通过自然光合作用将太阳能转化为生物质的效率较低。这转化为依赖自然光合作用的生物生产过程,该过程在能量上效率低下。最近,已经开发了具有显着提高太阳能转化为产品的效率的潜力的混合光合作用技术。在这些系统中,由生物催化剂将二氧化碳还原为生物燃料或其他感兴趣的化学物质的动力是由无机器件(如光伏电池或光电极)捕获的太阳能驱动的。在这里,我们探索了混合光合作用,并研究了用于改善该生物技术的策略。

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