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首页> 外文期刊>BioMed research international >Microalgae as Sustainable Renewable Energy Feedstock for Biofuel Production
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Microalgae as Sustainable Renewable Energy Feedstock for Biofuel Production

机译:微藻作为生物燃料生产可持续可再生能源原料

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The world energy crisis and increased greenhouse gas emissions have driven the search for alternative and environmentally friendly renewable energy sources. According to life cycle analysis, microalgae biofuel is identified as one of the major renewable energy sources for sustainable development, with potential to replace the fossil-based fuels. Microalgae biofuel was devoid of the major drawbacks associated with oil crops and lignocelluloses-based biofuels. Algae-based biofuels are technically and economically viable and cost competitive, require no additional lands, require minimal water use, and mitigate atmospheric CO_2. However, commercial production of microalgae biodiesel is still not feasible due to the low biomass concentration and costly downstream processes. The viability of microalgae biodiesel production can be achieved by designing advanced photobioreactors, developing low cost technologies for biomass harvesting, drying, and oil extraction. Commercial production can also be accomplished by improving the genetic engineering strategies to control environmental stress conditions and by engineering metabolic pathways for high lipid production. In addition, new emerging technologies such as algal-bacterial interactions for enhancement of microalgae growth and lipid production are also explored. This review focuses mainly on the problems encountered in the commercial production of microalgae biofuels and the possible techniques to overcome these difficulties.
机译:世界能源危机和温室气体排放量增加推动了搜索替代和环保的可再生能源。根据生命周期分析,微藻生物燃料被确定为可持续发展的主要可再生能源之一,潜力取代化石燃料。 Microalgae Biofuel缺乏与油作物和基于木质纤维素的生物燃料相关的主要缺点。基于藻类的生物燃料在技术上和经济上可行,并且具有成本竞争力,不需要额外的土地,需要最小的用水,并减轻大气的CO_2。然而,由于生物质浓度低,下游工艺且昂贵的下游工艺,微藻生物柴油的商业生产仍然不可行。微藻生物柴油生产的可行性可以通过设计先进的光生物反应器来实现,开发用于生物质收获,干燥和油提取的低成本技术。商业生产也可以通过改善基因工程策略来控制环境压力条件和高脂质生产的工程代谢途径来实现。此外,还探讨了新兴的技术,例如用于增强微藻生长和脂质生产的藻类相互作用。本综述主要集中在微藻生物燃料的商业生产中遇到的问题以及可能的技术来克服这些困难。

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