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Dyeing Industry Effluent System as Lipid Production Medium of Neochloris sp. for Biodiesel Feedstock Preparation

机译:新型绿藻脂质生产介质的印染废水系统。用于生物柴油原料制备

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摘要

Microalgae lipid feedstock preparation cost was an important factor in increasing biodiesel fuel hikes. This study was conducted with the concept of implementing an effluent wastewater as lipid production medium for microalgae cultivation. In our study textile dyeing industry effluent was taken as a lipid production medium for Neochloris sp. cultivation. The changes in physicochemical analysis of effluent before and after Neochloris sp. treatment were recorded using standard procedures and AAS analysis. There was especially a reduction in heavy metal like lead (Pb) concentration from 0.002 ppm to 0.001 ppm after Neochloris sp. treatment. Neochloris sp. cultivated in Bold Basal Medium (BBM) (specific algal medium) produced 41.93% total lipid and 36.69% lipid was produced in effluent based cultivation. Surprisingly Neochloris sp. cultivated in effluent was found with enhanced neutral lipid content, and it was confirmed by Nile red fluorescence assay. Further the particular enrichment in oleic acid content of the cells was confirmed with thin layer chromatography (TLC) with oleic acid pure (98%) control. The overall results suggested that textile dyeing industry effluent could serve as the best lipid productive medium for Neochloris sp. biodiesel feedstock preparation. This study was found to have a significant impact on reducing the biodiesel feedstock preparation cost with simultaneous lipid induction by heavy metal stress to microalgae.
机译:微藻脂质原料的制备成本是增加生物柴油燃料涨价的重要因素。进行这项研究的目的是将废水用作微藻培养的脂质生产介质。在我们的研究中,纺织品染色工业废水被用作Neochloris sp。的脂质生产介质。培养。 Neochloris sp。前后出水物化分析的变化。使用标准程序和AAS分析记录治疗情况。 Neochloris sp。之后,重金属如铅(Pb)的浓度从0.002 ppm降低到0.001 ppm。治疗。新绿藻在基于粗体的基础培养基(BBM)(特定的藻类培养基)中进行培养可产生41.93%的总脂质,而在基于废水的培养中可产生36.69%的脂质。令人惊讶的是新霉素。发现在污水中培养的中性脂质含量增加,并且通过尼罗红荧光测定法证实。此外,通过薄层色谱法(TLC)与纯的油酸(98%)对照确认了细胞中油酸含量的特定富集。总体结果表明,纺织印染工业废水可作为Neochloris sp的最佳脂质生产培养基。生物柴油原料制备。发现该研究对降低生物柴油原料制备成本具有显着影响,同时通过重金属胁迫微藻类同时诱导脂质。

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