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首页> 外文期刊>The Science of the Total Environment >A biorefinery for valorization of industrial waste-water and flue gas by microalgae for waste mitigation, carbon-dioxide sequestration and algal biomass production
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A biorefinery for valorization of industrial waste-water and flue gas by microalgae for waste mitigation, carbon-dioxide sequestration and algal biomass production

机译:生物精炼厂,通过微藻对工业废水和烟道气进行增值,以减少废物,二氧化碳封存和藻类生物质的生产

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Massive industrialization all over the globe is the main cause for the generation of huge quantity of wastes such as flue gas and wastewaters. Mindless release of these hazardous wastes into the environment is threatening the health and survival of the mankind. judicious use of these wastes for microalgal biomass cultivation is recognized as a plausible approach for the creation of a renewable and sustainable process chain for biofuel production. This study was designed to cultivate microalgae utilizing the organic and inorganic nutrients from the industrial wastewater (IWW) and coal-fired flue gas (FG) for simultaneous waste bio-remediation and biomass production for biorefinery application in closed photobioreactors. The two microalgae, Chlorella sp. and Chlorococcum sp. were cultivated in industrial wastewater where varying concentrations of coal-fired FG from 1 to 10% CO2, volume/volume percent (v/v) was supplied to stimulate the mixotrophic growth. Performance of the two microalgae was evaluated in terms of nutrient removal (ammonium, nitrate, phosphate and COD), CO2 fixation, total lipid and carbohydrate content obtained in the integrated mode of process development. The IWW with flue gas (5% CO2 (v/v)) resulted in maximum growth and CO2 fixation.The highest biomass growth (1.52 g L-1) and CO2 fixation (187.65 mg L-1 d(-1)) of Chlorella sp. with nutrient removal of >70% was observed by 5th day of batch cultivation. Nearly 90% removal of nitrogen resulted in nutrient limitation condition that steered the accumulation of lipid (17-34%) and carbohydrate (21.5-23.1%) in Chlorella and Chlorococcum sp. An overall 1.7 fold improvement in biomass was observed in this process integration compared with control culture. The present study presents a green process for waste remediation, CO2 fixation and production of biomass rich in lipid & carbohydrate content for the development of a green microalgal biorefinery. (C) 2019 Elsevier B.V. All rights reserved.
机译:全球范围的大规模工业化是产生大量废物(例如烟道气和废水)的主要原因。这些危险废物无意识地释放到环境中,正威胁着人类的健康和生存。明智地将这些废物用于微藻生物量培养是建立生物燃料生产可再生和可持续过程链的可行方法。这项研究旨在利用工业废水(IWW)和燃煤烟道气(FG)中的有机和无机营养物来培养微藻,以同时进行废物生物修复和生物质生产,以在封闭的光生物反应器中进行生物精炼。两个微藻,小球藻。和绿球藻在工业废水中培养,其中燃煤FG浓度从1%到10%CO2不等,提供了体积/体积百分比(v / v)来刺激混合营养生长。根据营养去除率(铵,硝酸盐,磷酸盐和COD),CO2固定,在过程开发的集成模式下获得的总脂质和碳水化合物含量,评估了两种微藻的性能。含烟气(5%CO2(v / v))的IWW导致最大的生长和CO2固定;最大的生物量增长(1.52 g L-1)和CO2固定(187.65 mg L-1 d(-1))小球藻分批培养第5天观察到养分去除率> 70%。将近90%的氮去除会导致营养限制条件,从而导致小球藻和小球藻中脂质(17-34%)和碳水化合物(21.5-23.1%)的积累受到控制。与对照培养相比,在该过程整合中观察到生物量总体提高了1.7倍。本研究提出了一种绿色的过程,用于废物修复,CO2固定和生产脂质和碳水化合物含量丰富的生物质,以开发绿色微藻生物精炼厂。 (C)2019 Elsevier B.V.保留所有权利。

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