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Microalgae biofuels as an alternative to fossil fuel for power generation

机译:微藻生物燃料可替代矿物燃料发电

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Biofuels productions from microalgae received wide attention recently and have high potential to replace fossil fuels. This paper served as a platform to critically review current production technologies of microalgae, ranging from cultivation, harvesting, extraction and several biofuels conversion processes. In addition, due to the high photosynthetic efficiency of microalgae, mass cultivation of microalgae is believed to be able to efficiently reduce the carbon dioxide emission to atmosphere and thus, reducing the impact of global warming. This is because microalgae have high growth rate and is able to develop maximum of 70% of lipid content within their cells depending on species. Apart from that, microalgae have the ability to survive under harsh condition and occupied smaller cultivation land area than other land crops. The harvested microalgae biomass can be used for electrical generation, while its crude lipid can be used as transportation fuel as it has 80% average energy content of petroleum. In the present paper, a detailed discussion to produce biodiesel, fuel gas, bio-oil, methane, hydrogen and alcohol from microalgae biomass are also included. Besides, updated research, challenges and the way forward of microalgae biofuels are also presented. in future, biofuels production from microalgae can be economical viable at some scale, which is then profitable in terms of economics and also environment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:微藻生产的生物燃料近来受到广泛关注,并且具有替代化石燃料的巨大潜力。本文提供了一个平台,可以严格审查当前的微藻生产技术,包括种植,收获,提取和多种生物燃料转化过程。另外,由于微藻具有高的光合作用效率,因此认为微藻的大规模培养能够有效地减少向大气排放的二氧化碳,从而减少全球变暖的影响。这是因为微藻具有高生长速率,并且能够根据物种在其细胞内产生最大70%的脂质含量。除此之外,微藻具有在恶劣条件下生存的能力,并且比其他陆地作物占用的耕地面积小。收获的微藻生物质可用于发电,而其粗脂质可用作石油的运输燃料,因为它具有80%的石油平均能量含量。在本文中,还详细讨论了从微藻生物质生产生物柴油,燃气,生物油,甲烷,氢气和酒精。此外,还介绍了微藻生物燃料的最新研究,挑战和前进方向。将来,从微藻类生产生物燃料在一定规模上可能是经济可行的,然后就经济性和环境而言都是有利可图的。 (C)2015 Elsevier Ltd.保留所有权利。

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