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Review on cultivation and thermochemical conversion of microalgae to fuels and chemicals: Process evaluation and knowledge gaps

机译:将微藻培养和热化学转化为燃料和化学物质的回顾:过程评估和知识差距

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Over the last decades, microalgae have gained a commendable role in the rising field of biofuel production as they do not compete with food supply, reduce greenhouse gases emission, and mitigate CO2. Specifically, thermochemical processing of microalgae yields products, which can be used both for energy and other industrial purposes, depending on the algal strain, processing method and operative conditions. Algae are converted into various high-value products, including nutraceuticals, colourants, food supplements, char, bio-crude, electricity, heat, transportation fuel, and bio-oil. Therefore, micro algae are believed to be a strategic resource for the upcoming years and their utilization is meaningful for many industrial sectors. In this framework, this review addresses the various thermochemical processing of microalgae to various biofuels and their industrial significance. The obstacles in various thermochemical conversion methods have been critically flagged, in order to enable researchers to choose the optimal method for fuel production. Furthermore, light is shed on cultivation systems to generate rapidly microalgal biomass for thermochemical processing. Eventually, all recent literature advancements concerning microalgae cultivation and thermochemical processing are critically surveyed, and summarized. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在过去的几十年中,微藻类在不断增长的生物燃料生产领域中发挥了值得称赞的作用,因为它们无法与食品供应竞争,减少温室气体排放并减少二氧化碳排放。具体来说,根据藻类,加工方法和操作条件,对微藻进行热化学处理会产生可用于能源和其他工业目的的产品。藻类被转化为各种高价值产品,包括保健食品,着色剂,食品补充剂,炭,生物原油,电,热,运输燃料和生物油。因此,微藻被认为是未来几年的战略资源,其利用对于许多工业领域都是有意义的。在此框架下,本综述针对微藻对各种生物燃料的各种热化学处理及其工业意义。为了使研究人员能够选择最佳的燃料生产方法,已经对各种热化学转化方法中的障碍进行了严格标记。此外,在培养系统上散发出光,以快速产生用于热化学处理的微藻生物质。最后,对与微藻培养和热化学处理有关的所有最新文献进展进行了严格的调查和总结。 (C)2018 Elsevier Ltd.保留所有权利。

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