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Lipase-Catalyzed Synthesis of Biodiesel from Crude Cottonseed Oil

机译:脂肪酶催化从棉籽油中合成生物柴油

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The transesteriflcation of crude cottonseed oil with methyl acetate to biodiesel catalyzed by combined lipases (Lipozyme TL IM and Novozym 435) was investigated. The significant variables of transesterification (methanol concentration, combined lipases concentration and reaction temperature) were screened from six variables by PlackettBurman (PB) design and were further optimized via response surface methodological approach. A 20-run full factorial central composite design (CCD) was used to construct the statistical model, and the optimal conditions were obtained as follows: temperature 57.36°C, reaction time 10 h, 17.7% combined lipases (m (Lipozyme TL IM) : m (Novozym 435)=2:1) based on oil weight, substrate molar ratio (methyl acetate/cottonseed oil) 12:1, 2.96% methanol and 35% n-hexane based on oil weight. The predicted biodiesel yield was 93.61% under the optimal conditions and the subsequent verification experiments with biodiesel yield of 94.92% confirmed the validity of the predicted model.
机译:研究了混合脂肪酶(Lipozyme TL IM和Novozym 435)催化的粗棉籽油与乙酸甲酯的酯交换反应生成生物柴油。通过PlackettBurman(PB)设计从六个变量中筛选出酯交换反应的重要变量(甲醇浓度,组合的脂肪酶浓度和反应温度),并通过响应面方法学进一步优化了这些变量。 20运行全因子中心复合设计(CCD)用于构建统计模型,并获得了最佳条件,如下所示:温度57.36°C,反应时间10 h,组合脂肪酶为17.7% (m(Lipozyme TL IM):m(Novozym 435)= 2:1),基于油重,底物摩尔比(乙酸甲酯/棉籽油)12:1、2.96%的甲醇和35%的正己烷(基于油重) 。在最佳条件下,生物柴油的预测产率为93.61%,随后的生物柴油产率为94.92%的验证实验证实了预测模型的有效性。

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