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首页> 外文期刊>Photosynthesis Research: An International Journal >Photobiological hydrogen production and artificial photosynthesis for clean energy: from bio to nanotechnologies
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Photobiological hydrogen production and artificial photosynthesis for clean energy: from bio to nanotechnologies

机译:光生物制氢和清洁能源的人工光合作用:从生物技术到纳米技术

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摘要

Global energy demand is increasing rapidly and due to intensive consumption of different forms of fuels, there are increasing concerns over the reduction in readily available conventional energy resources. Because of the deleterious atmospheric effects of fossil fuels and the uncertainties of future energy supplies, there is a surge of interest to find environmentally friendly alternative energy sources. Hydrogen (H-2) has attracted worldwide attention as a secondary energy carrier, since it is the lightest carbon-neutral fuel rich in energy per unit mass and easy to store. Several methods and technologies have been developed for H-2 production, but none of them are able to replace the traditional combustion fuel used in automobiles so far. Extensively modified and renovated methods and technologies are required to introduce H-2 as an alternative efficient, clean, and cost-effective future fuel. Among several emerging renewable energy technologies, photobiological H-2 production by oxygenic photosynthetic microbes such as green algae and cyanobacteria or by artificial photosynthesis has attracted significant interest. In this short review, we summarize the recent progress and challenges in H-2-based energy production by means of biological and artificial photosynthesis routes.
机译:全球能源需求正在迅速增长,并且由于大量消耗各种形式的燃料,人们越来越关注减少现成的常规能源的消耗。由于化石燃料对大气的有害影响以及未来能源供应的不确定性,寻找环保替代能源的兴趣激增。氢(H-2)作为次要能源载体已经引起了全世界的关注,因为它是最轻的碳中性燃料,每单位质量的能量丰富并且易于储存。已经开发了用于H-2生产的几种方法和技术,但是到目前为止,它们都不能替代汽车中使用的传统燃烧燃料。为了引入H-2作为替代的高效,清洁和经济高效的未来燃料,需要进行大量修改和翻新的方法和技术。在几种新兴的可再生能源技术中,氧合光合微生物(例如绿藻和蓝细菌)或人工光合作用产生的光生物H-2引起了人们的极大兴趣。在这篇简短的评论中,我们总结了通过生物和人工光合作用途径基于H-2的能源生产的最新进展和挑战。

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