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Photocatalytic Conversion of Carbon Dioxide into Valuable Chemicals in 'Artificial Photosynthesis' Systems: Recent Developments and Patents Review

机译:在“人工光合作用”系统中将二氧化碳光催化转化为有价值的化学品:最新进展和专利审查

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摘要

Our current economic and industrial growth relies on fossil fuels that can be easily and economically converted into energy and useful chemicals, but this economic model is endangered by the depletion of these resources and by environmental problems as the emission of CO_2 and other greenhouse gases. To solve this dilemma, we can find inspiration in natural photosynthetic organisms that consider CO_2 as a carbon source and not as a waste, and power its transformation into valuable chemicals with renewable solar energy. To transform this vision into a practical and affordable reality, several challenging scientific and technical questions must be solved, including: the cost effective production of stable photocatalysts, the elucidation of the mechanisms of formation of useful compounds from CO_2, or the implementation of the technology using scalable reactor concepts. This article presents a review of recent developments and patents related to "artificial photosynthesis" systems, covering key aspects such as the transition from macro-sized photo-electrochemical cells to nanostruc-tured catalyst, the combination of these catalysts with organic or inorganic light sensitizers in order to extend the light wavelength range in which they are active, and the design of artificial photosynthesis reactors.
机译:我们当前的经济和工业增长依赖于化石燃料,这些化石燃料可以轻松,经济地转化为能源和有用的化学物质,但是这些资源的枯竭以及诸如CO_2和其他温室气体的排放等环境问题,危及了这种经济模式。为了解决这个难题,我们可以在自然光合生物中找到灵感,这些光合生物将CO_2视为碳源而不是废物,并利用可再生太阳能将其转化为有价值的化学物质。为了将这一愿景转变为务实且负担得起的现实,必须解决一些具有挑战性的科学和技术问题,包括:低成本生产稳定的光催化剂,阐明由CO_2形成有用化合物的机理或该技术的实施使用可扩展的反应堆概念。本文介绍了与“人工光合作用”系统有关的最新进展和专利,涵盖了关键方面,例如从大型光电化学电池向纳米结构催化剂的过渡,这些催化剂与有机或无机光敏剂的组合为了扩展它们活跃的光波长范围,以及人工光合作用反应器的设计。

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