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Optimized Production of Biodiesel from Waste Cooking Oil by Lipase Immobilized on Magnetic Nanoparticles

机译:固定在磁性纳米粒子上的脂肪酶从废弃食用油中优化生物柴油的生产

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摘要

Biodiesel, a non-toxic and biodegradable fuel, has recently become a major source of renewable alternative fuels. Utilization of lipase as a biocatalyst to produce biodiesel has advantages over common alkaline catalysts such as mild reaction conditions, easy product separation, and use of waste cooking oil as raw material. In this study, Pseudomonas cepacia lipase immobilized onto magnetic nanoparticles (MNP) was used for biodiesel production from waste cooking oil. The optimal dosage of lipase-bound MNP was 40% (w/w of oil) and there was little difference between stepwise addition of methanol at 12 h- and 24 h-intervals. Reaction temperature, substrate molar ratio (methanol/oil), and water content (w/w of oil) were optimized using response surface methodology (RSM). The optimal reaction conditions were 44.2 °C, substrate molar ratio of 5.2, and water content of 12.5%. The predicted and experimental molar conversions of fatty acid methyl esters (FAME) were 80% and 79%, respectively.
机译:生物柴油是一种无毒且可生物降解的燃料,最近已成为可再生替代燃料的主要来源。与常规的碱性催化剂相比,利用脂肪酶作为生物催化剂来生产生物柴油具有优势,例如反应条件温和,产品易于分离以及使用废食用油作为原料。在这项研究中,固定在磁性纳米颗粒(MNP)上的洋葱假单胞菌脂肪酶用于从废食用油生产生物柴油。脂肪酶结合的MNP的最佳剂量为40%(w / w油),并且在12 h和24 h间隔内逐步添加甲醇之间的差异很小。使用响应表面方法(RSM)对反应温度,底物摩尔比(甲醇/油)和水含量(w / w油)进行了优化。最佳反应条件为44.2°C,底物摩尔比为5.2,水含量为12.5%。脂肪酸甲酯(FAME)的预测和实验摩尔转化率分别为80%和79%。

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