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Biodiesel synthesis from wastewater grown microalgal feedstock using enzymatic conversion: A greener approach

机译:使用酶促转化法从废水中生长的微藻原料合成生物柴油:一种更环保的方法

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摘要

Commercial scale microalgal biodiesel production is still challenging due to high cultivation cost and inefficient conversion technologies. This work explicated an economical cultivation strategy using anaerobic centrate as growth medium of Acutodesmus obliquus. Among various modes evaluated maximum lipid productivity of 57.03 mgL(-1)d(-1) was achieved under mixotrophic cultivation condition using anaerobic centrate. Conversion of microalgal lipids to biodiesel using immobilized Candida rugosa lipase was investigated. Reaction parameters viz. temperature, methanol to oil molar and enzyme amount were optimized using response surface methodology. Best conversion of 95.36% was achieved at 50 degrees C, methanol to oil ratio of 3:1 and 15% enzyme amount based on oil weight. Immobilized C. rugosa lipase can be used for 5 batches without much loss in conversion efficiency ( 90%). Most of the fuel properties comply with ASTM and EN standards.
机译:由于高昂的种植成本和低效的转化技术,商业规模的微藻生物柴油生产仍然具有挑战性。这项工作阐明了使用厌氧浓缩液作为斜切线虫生长培养基的经济栽培策略。在各种评估模式中,使用厌氧浓缩液在混合营养培养条件下可达到57.03 mgL(-1)d(-1)的最大脂质生产率。使用固定化念珠菌脂肪酶研究了微藻类脂质向生物柴油的转化。反应参数即。温度,甲醇与油的摩尔比和酶用量均采用响应面法进行了优化。在50℃,甲醇与油的比例为3:1和基于油重量的15%的酶量下,最佳转化率为95.36%。固定化的皱纹克鲁维酵母脂肪酶可用于5批,而转换效率没有很大损失(> 90%)。大多数燃料特性符合ASTM和EN标准。

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