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Solar fuels vis-a-vis electricity generation from sunlight: The current state-of-the-art (a review)

机译:太阳能与日光发电的关系:当前的最新水平(综述)

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Synthesis of solar fuels including methanol from carbon dioxide (CO2) and water using solar energy or electricity derived from sunlight, which is popularly known as artificial photosynthesis (AP), has been considered to be one of the top-most research priorities all over the world, as on today, as this process can indeed deal with (i) the CO2 related global warming problem, (ii) synthesis of renewable energy resources, and (iii) storing of energy in the form of liquid fuels with considerably high energy density. By using electricity derived from sunlight, the CO2 can be reduced into methanol and other value added chemicals using water as a source of protons and electrons in a device called, artificial leaf. The development of an efficient AP or artificial leaves is possible by the careful analysis and understanding of the complete information available on (i) CO2 reduction process, (ii) water oxidation or splitting reaction, and (iii) the electricity generation from sunlight. The current state-of-the-art on CO2 reduction has been thoroughly reviewed in a recent article "Conversion of carbon dioxide into methanol a potential liquid fuel: fundamental challenges and opportunities", (Renewable and Sustainable Energy Reviews, 31, 2014, 221-257), whereas, the same on (i) water oxidation (or splitting) process, and (ii) the electricity generation from sunlight is yet to be reviewed together from the perspective of creating an efficient and economically viable artificial leaves. This article is an attempt to this effect while citing all the up to date relevant references. (C) 2015 Elsevier Ltd. All rights reserved.
机译:人们普遍认为,利用太阳能或太阳光产生的电能从二氧化碳(CO2)和水中合成包括甲醇在内的太阳能燃料,是众所周知的人工光合作用(AP),是整个研究领域中最重要的研究重点之一。就像今天一样,这个世界确实可以解决(i)与二氧化碳有关的全球变暖问题;(ii)可再生能源的合成;以及(iii)以能量密度很高的液体燃料形式储存的能量。通过使用来自太阳光的电力,可以在称为人造叶的装置中使用水作为质子和电子源,将CO2还原为甲醇和其他增值化学品。通过仔细分析和了解有关(i)CO2还原过程,(ii)水的氧化或分解反应以及(iii)日光发电的完整信息,可以开发出高效的AP或人造树叶。在最近的文章“将二氧化碳转化为潜在的液体燃料甲醇中:基本挑战和机遇”中,对当前最新的二氧化碳减排技术进行了全面回顾,(可再生能源与可持续能源评论,2014年第31期,第221页) -257),但(i)水氧化(或分解)过程,以及(ii)阳光发电尚待从创建高效且经济可行的人工叶片的角度进行审查。本文是为此目的的一种尝试,同时引用了所有最新的相关参考资料。 (C)2015 Elsevier Ltd.保留所有权利。

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