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Screening of procedures catalyzed by lipase transesterification in non-aqueous solvents

机译:筛选脂肪酶酯酯化在非水溶剂中的方法

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Biodiesel production catalyzed by Novozyme 435 was optimized using Plaekett-Burman design and response surface methodology. Firstly, Plaekett-Burman was employed to screen the main efficient parameters on conversion rate from enzyme dosage, reaction temperature, tert-butanol amount, oil/alcohol molar ratio and molecular sleves added amount. Then, the steepest ascent experiments were carried out to approach the optimal conditions. Finally, the optimized conditions were addressed with three-factor-three-level response surface methodology. The results showed that the optimized conditions were: lipase dosage 3 wt% (based on oil weight), temperature 40 °C, tert-butanol added amount 38.7 % (based on oil volume, v/v), molecular sleves added amount 11.9 wt% (based on oil weight) and molar ratio of methanol to oil 4.77∶1. Under the optimized conditions, the biodiesel yield was estimated to be 97.69 %. The proposed model on conversion rate had a satisfactory coefficient of R2 (= 98.34 %) and was experimentally verified. The Novozyme 435 exhibited high operational stability in non-aqueous. After 10 cycles (160 h) successively, the activity of combined lipases maintained 90 % of its original activity.
机译:使用Plaekett-Burman设计和响应表面方法优化了Novozyme 435催化的生物柴油生产。首先,Plaekett-Burman用于筛选酶剂量,反应温度,叔丁醇量,油/醇摩尔比和分子虹量的转化率的主要有效参数。添加量。然后,进行最陡峭的上升实验以接近最佳条件。最后,用三因素三级响应面方法解决了优化的条件。结果表明,优化的条件是:脂肪酶剂量3wt%(基于油重),温度40℃,叔丁醇加入量38.7%(基于油量,v / v),分子虹量添加量11.9重量%(基于油量)和甲醇的摩尔比为油4.77:1。在优化的条件下,估计生物柴油产量为97.69%。所提出的转化率模型具有R 2 (= 98.34%)的令人满意的系数,并进行了实验验证。 Novozyme 435在非水性中表现出高的操作稳定性。在连续10个循环(160小时)后,组合脂肪酶的活性保持了其原始活动的90%。

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