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微藻生物制氢——主要瓶颈与未来研究展望

Biohydrogen production from microalgae-Major bottlenecks and future research perspectives.

作者信息

Nagarajan Dillirani, Dong Cheng-Di, Chen Chun-Yen, Lee Duu-Jong, Chang Jo-Shu

机构信息

Department of Chemical Engineering, National Cheng Kung University, Tainan, Taiwan.

Department of Chemical Engineering, National Taiwan University, Taipei, Taiwan.

出版信息

Biotechnol J. 2021 May;16(5):e2000124. doi: 10.1002/biot.202000124. Epub 2021 Mar 22.

Abstract

The imprudent use of fossil fuels has resulted in high greenhouse gas (GHG) emissions, leading to climate change and global warming. Reduction in GHG emissions and energy insecurity imposed by the depleting fossil fuel reserves led to the search for alternative sustainable fuels. Hydrogen is a potential alternative energy carrier and is of particular interest because hydrogen combustion releases only water. Hydrogen is also an important industrial feedstock. As an alternative energy carrier, hydrogen can be used in fuel cells for power generation. Current hydrogen production mainly relies on fossil fuels and is usually energy and CO -emission intensive, thus the use of fossil fuel-derived hydrogen as a carbon-free fuel source is fallacious. Biohydrogen production can be achieved via microbial methods, and the use of microalgae for hydrogen production is outstanding due to the carbon mitigating effects and the utilization of solar energy as an energy source by microalgae. This review provides comprehensive information on the mechanisms of hydrogen production by microalgae and the enzymes involved. The major challenges in the commercialization of microalgae-based photobiological hydrogen production are critically analyzed and future research perspectives are discussed. Life cycle analysis and economic assessment of hydrogen production by microalgae are also presented.

摘要

化石燃料的不当使用导致了高温室气体(GHG)排放,进而引发气候变化和全球变暖。化石燃料储备的枯竭所带来的温室气体排放减少和能源不安全问题,促使人们寻找替代的可持续燃料。氢是一种潜在的替代能源载体,尤其引人关注,因为氢燃烧仅产生水。氢也是一种重要的工业原料。作为替代能源载体,氢可用于燃料电池发电。目前的制氢主要依赖化石燃料,且通常能源密集且碳排放量大,因此将源自化石燃料的氢用作无碳燃料源是错误的。生物制氢可通过微生物方法实现,而利用微藻制氢因具有碳减排效应以及微藻能将太阳能作为能源加以利用而备受瞩目。本综述提供了有关微藻产氢机制及相关酶的全面信息。对基于微藻的光生物制氢商业化过程中的主要挑战进行了批判性分析,并探讨了未来的研究前景。还介绍了微藻产氢的生命周期分析和经济评估。

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