首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Multi-objective optimization of media nutrients for enhanced production of algae biomass and fatty acid biosynthesis from Chlorella pyrenoidosa NCIM 2738
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Multi-objective optimization of media nutrients for enhanced production of algae biomass and fatty acid biosynthesis from Chlorella pyrenoidosa NCIM 2738

机译:媒体营养素的多目标优化,从小藻藻藻生物量增强生产藻类生物量和脂肪酸生物合成液2738

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摘要

This study aimed to optimize significant medium nutrient parameters for maximization of algal lipid and biomass production by using multi objective optimization strategy. Nutrients (nitrate, phosphate and carbohydrate) were investigated to improve the lipid accumulation, biomass production and carbohydrate consumption individually and cumulative manner using a central composite design for the Chlorella pyrenoidosa NCIM 2738 cultivation. Maximum lipid, algal biomass and carbohydrate utilization for individual response optimization were found 34.8% (w/w), 1464.3 mg L-1 and 93.4%, respectively at different optimum level of selected parameters. Whereas, maximum lipid accumulation, biomass production and glucose consumption values in multi-response optimization were observed 28.9%, 1271.2 mg L-1 and 89.2%, respectively at optimum level of 16.8 mM NaNO3, 300.9 mu M K2HPO4 and 2.6% (w/v) glucose. The overall enhancements in lipid productivities by single and multi-response optimization in comparison with control medium conditions were found 2.35 and 2.90-fold with productivity level of 24.8 and 30.6 mg L-1 day(-1), respectively. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本研究旨在利用多目标优化策略优化藻类脂质和生物质生产的显着培养参数。研究了营养物质(硝酸盐,磷酸盐和碳水化合物)以改善脂质积累,生物质生产和碳水化合物消耗,使用中央复合设计为小球藻培养物2738种植。在不同的最佳选择参数的不同最佳水平下,发现各个反应优化的最大脂质,藻类生物量和碳水化合物利用率为34.8%(w / w),1464.3mg l-1和93.4%。尽可能地观察到多响应优化中的最大脂质积累,生物质产生和葡萄糖消耗值,分别在最佳水平为16.8mm纳米3,300.9μmk2hpo4和2.6%(w / v)葡萄糖。与对照介质条件相比,单次和多响应优化的脂质生产中的总体增强分别为2.35和2.90倍,生产率水平分别为24.8和30.6mg L-1天(-1)。 (c)2015 Elsevier Ltd.保留所有权利。

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