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An integrated approach to produce biodiesel and monoglycerides by enzymatic interestification of babassu oil (Orbinya sp)

机译:通过巴巴苏油(Orbinya sp)的酶促酯化生产生物柴油和甘油单酸酯的综合方法

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摘要

Two screenings of commercial lipases were performed to find a lipase with superior performance for the integrated production of biodiesel and monoglycerides. The first screening was carried out under alcoholysis conditions using ethanol as acyl acceptor to convert triglycerides to their corresponding ethyl esters (biodiesel). The second screening was performed under glycerolysis conditions to yield monoglycerides (MG). All lipases were immobilized on silica-PVA composite by covalent immobilization. The assays were performed using babassu oil and alcohols (ethanol or glycerol) in solvent free systems. For both substrates, lipase from Burkholderia cepacia (lipase PS) was found to be the most suitable enzyme to attain satisfactory yields. To further improve the process, the Response Surface Methodology (RSM) was used to determine the optima operating conditions for each biotransformation. For biodiesel production, the highest transesterification yield (>98%) was achieved within 48 h reaction at 39℃ using an oil-to-ethanol molar ratio of 1:7. For MG production, optima conditions corresponded to oil-to-glycerol molar ratio of 1:15 at 55℃, yielding 25 wt.% MG in 6 h reaction. These results show the potential of 8. cepacia lipase to catalyze both reactions and the feasibility to consider an integrated approach for biodiesel and MG production.
机译:对商业脂肪酶进行了两次筛选,以发现具有优异性能的脂肪酶,可用于生物柴油和甘油单酸酯的综合生产。第一次筛选在醇解条件下进行,使用乙醇作为酰基受体将甘油三酸酯转化为其相应的乙酯(生物柴油)。在甘油分解条件下进行第二次筛选以产生甘油单酸酯(MG​​)。通过共价固定将所有脂肪酶固定在二氧化硅-PVA复合材料上。使用无溶剂系统中的巴巴苏油和醇类(乙醇或甘油)进行测定。对于两种底物,发现洋葱伯克霍尔德氏菌的脂肪酶(脂肪酶PS)是获得令人满意的产量的最合适的酶。为了进一步改进该过程,使用了响应面方法(RSM)来确定每种生物转化的最佳操作条件。对于生物柴油的生产,在39℃,油/乙醇摩尔比为1:7的情况下,反应48小时内可实现最高的酯交换产率(> 98%)。对于MG的生产,最佳条件对应于55℃下油与甘油的摩尔比为1:15,在6小时反应中产生25重量%的MG。这些结果显示了8.西伯西亚脂肪酶催化两种反应的潜力,以及考虑采用生物柴油和MG生产一体化方法的可行性。

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