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首页> 外文期刊>ACS Omega >Biodiesel Production Catalyzed by a Methanol-Tolerant Lipase A from Candida antarctica in the Presence of Excess Water
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Biodiesel Production Catalyzed by a Methanol-Tolerant Lipase A from Candida antarctica in the Presence of Excess Water

机译:过量水存在下南极假丝酵母的耐甲醇脂肪酶A催化生产生物柴油

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In this article, biodiesel was prepared using a novel free liquid lipase A from Candida antarctica (CALA) as a catalyst in the presence of excess water. The methanol tolerance of CALA was investigated. The effect of reaction conditions, including the molar ratio of soybean oil to methanol, water load, CALA load, reaction temperature, and reaction time, was evaluated. Reaction thermodynamics and kinetics were also analyzed. Results showed that free liquid lipase CALA showed excellent methanol tolerance in the reaction system using one-step addition of methanol and can be used to prepare biodiesel with water load of 12–14%. The influence of three transesterification variables on biodiesel yield was water load > temperature > time. The transesterification conditions were optimized by response surface methodology as follows: CALA load 5%, substrate molar ratio (soybean oil/methanol) 1:7, water load 14%, reaction time 26 h, and temperature 38 °C. The maximum biodiesel yield (92.4 ± 0.8%) was obtained under optimal conditions. The activation energy for biodiesel formation was 52.58 kJ/mol. Kinetic parameters Km′ and Vmax were 4.84 × 10–1 mol/L and 6.85 × 10–2 mol/(L·min), respectively. The mechanism of CALA-catalyzed transesterification was also proposed.
机译:在本文中,在过量水的存在下,使用来自南极假丝酵母(CALA)的新型游离液体脂肪酶A作为催化剂制备了生物柴油。研究了CALA的甲醇耐受性。评价了反应条件的影响,包括大豆油与甲醇的摩尔比,水负荷,CALA负荷,反应温度和反应时间。还分析了反应热力学和动力学。结果表明,使用一步添加甲醇,游离液体脂肪酶CALA在反应系统中显示出优异的甲醇耐受性,可用于制备含水量为12–14%的生物柴油。三个酯交换变量对生物柴油产量的影响是水负荷>温度>时间。通过响应面方法对酯交换条件进行了优化,如下所示:CALA负载5%,底物摩尔比(大豆油/甲醇)1:7,水负载14%,反应时间26 h,温度38°C。在最佳条件下可获得最大的生物柴油产率(92.4±0.8%)。生物柴油形成的活化能为52.58 kJ / mol。动力学参数Km'和Vmax分别为4.84×10-1 mol / L和6.85×10-2 mol /(L·min)。还提出了CALA催化的酯交换反应的机理。

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