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Optimization of biodiesel synthesis from nonedible oil using immobilized bio-support catalysts in jacketed packed bed bioreactor by response surface methodology

机译:响应面分析法在夹套填充床生物反应器中使用固定化的生物载体催化剂优化非食用油的生物柴油合成

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The present study has been focussed on biodiesel production from nonedible oil in a jacketed packed bed bioreactor (JPBBR) using immobilized (lipase from Pseudomonas cepacia) biocatalyst under the cleaner production. It has no harmful by products. Experimental data were evaluated by response surface methodology (RSM) integrated desirability functional approach. RSM based on a, 4 factors and 5 levels central composite design (CCD) was employed to obtain the best possible combination which was found to be under the optimized conditions of enzymatic transesterification reactions, i.e. 2-propanol to oil molar ratio_5.93:1, time_24.32 h, enzyme (lipase) loading_9.46% (w/w) and temperature_49.7 degrees C. The actual experimental yield was 84.58%, which compared well to the maximum predicted value of 83.80% and conversion of biodiesel yield 85.14%. Reusability test shows the bio-support catalyst could retain up to similar to 70% of its initial biodiesel yield after 10 cycles. The results showed that the immobilized lipase produced high biodiesel yield after 50 days and retained 78.58%, even after 60 days. This proves the beneficial role at industrial scale. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究的重点是在清洁生产条件下使用固定化(洋葱假单胞菌的脂肪酶)生物催化剂在夹套夹层床生物反应器(JPBBR)中由非食用油生产生物柴油。它没有有害的副产品。实验数据通过响应面方法(RSM)集成期望功能方法进行评估。采用基于4个因素和5个层次的中心复合设计(CCD)的RSM来获得最佳组合,该组合被发现是在酶促酯交换反应的优化条件下进行的,即2-丙醇与油的摩尔比_5.93:1 ,时间_24.32 h,酶(脂肪酶)负载_9.46%(w / w)和温度_49.7摄氏度。实际实验产率为84.58%,与最高预测值83.80%和生物柴油产率的转化率相比较85.14%。可重复使用性测试显示,生物载体催化剂在10个循环后可以保留高达其初始生物柴油收率的70%。结果表明,固定化的脂肪酶在50天后产生了很高的生物柴油收率,即使在60天后仍保留了78.58%。这证明了在工业规模上的有益作用。 (C)2019 Elsevier Ltd.保留所有权利。

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