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Integrated CO_2 capture, wastewater treatment and biofuel production by microalgae culturing-A review

机译:微藻培养的综合CO_2捕集,废水处理和生物燃料生产-综述

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摘要

Algae have recently received growing attention given its prospects as a source of renewable energy and its potential for CO_2 capture. Algae culture is of increasing value given that: (ⅰi) algae can be cultivated on non-agricultural land using wastewater, (ⅱ) algae can provide a high yield on a per unit of light irradiated area, (ⅲ) algae growth requires CO_2 and nutrients that can be obtained from wastewater and fossil fuel combustion and (ⅳ) algae contains high oil and starch making possible the production of high quality biodiesel. Thus, algae culture can contribute to CO_2 fixation, wastewater treatment and can be a source of bioenergy. This article presents a critical review, focusing on various microalgae species that consume CO_2 and nutrients from wastewater, and provide high quality biofuel. In this respect, a number of relevant topics are discussed in this review: (a) the media for algae culture, (b) the photobioreactor, (c) the associated wastewater treatment processes, (d) the CO_2 capture mechanism and (e) microalgal harvesting. This review also considers various aspects of the biomass processing such as (a) lipid extraction, (b) thermodynamics of the produced biomass conversion, (c) biomass gasification, (d) biodiesel production, (e) catalysts, (f) reaction pathways/mechanisms and (g) reaction kinetics.
机译:鉴于藻类作为可再生能源的前景及其捕获CO_2的潜力,近来受到了越来越多的关注。藻类养殖具有越来越高的价值,原因是:(ⅰ)藻类可以在非农业土地上利用废水进行养殖;(ⅱ)藻类可以在单位光照区域提供高产量;(ⅲ)藻类生长需要CO_2和可通过废水和化石燃料燃烧获得的营养物质,以及(ⅳ)藻类含有高油和淀粉,从而有可能生产出高质量的生物柴油。因此,藻类培养可以促进CO_2固定,废水处理,并且可以成为生物能源的来源。本文提出了一项重要的评论,重点讨论了各种微藻类,这些微藻类消耗废水中的CO_2和养分,并提供高质量的生物燃料。在这方面,本次审查讨论了许多相关主题:(a)藻类培养的介质;(b)光生物反应器;(c)相关的废水处理过程;(d)CO_2捕集机制;(e)微藻收获。该评价还考虑了生物质加工的各个方面,例如(a)脂质提取,(b)产生的生物质转化的热力学,(c)生物质气化,(d)生物柴油生产,(e)催化剂,(f)反应途径机理和(g)反应动力学。

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