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首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Enzyme-mediated epoxidation of methyl oleate supported by imidazolium-based ionic liquids
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Enzyme-mediated epoxidation of methyl oleate supported by imidazolium-based ionic liquids

机译:咪唑基离子液体支持的油酸甲酯的酶介导的环氧化

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摘要

In the present manuscript we describe and discuss the use of hydrophobic and hydrophilic ionic liquids (ILs) as efficient supports to the enzyme-catalyzed epoxidation of biodiesel. The use of nine different lipases in three different ILs (BMI.PF6, BMI.NTf2 and BMI.BF4) gave high biodiesel conversion rates in short reaction times using hydrogen peroxide (30%, v/v) as the epoxidation agent. A drastic behavior change is observed by altering the media from a hydrophobic IL to a hydrophilic IL For instance, the use of Amano A. lipase (from Aspergillus niger) in hydrophilic BMI.BF4 yielded the epoxidized compound in 89% in the first reaction hour, and in the mean time, hydrophobic BMLPF6 yielded the same product in 67%. The use of other lipases resulted in the desired epoxidized derivative and also in the 1,2-diol as a result of a reversible epoxy ring-opening promoted in the reaction media. Conversions and selectivities depended on the nature of the IL, on reaction time and on the selection of the lipase enzyme.
机译:在本手稿中,我们描述和讨论了疏水和亲水离子液体(ILs)作为酶催化生物柴油环氧化的有效载体的用途。使用过氧化氢(30%,v / v)作为环氧化试剂,在三种不同的IL(BMI.PF6,BMI.NTf2和BMI.BF4)中使用九种不同的脂肪酶可在较短的反应时间内获得较高的生物柴油转化率。通过将介质从疏水性IL更改为亲水性IL,可以观察到剧烈的行为变化。例如,在亲水性BMI中使用Amano A.脂肪酶(得自黑曲霉)。BF4在第一个反应小时内产生了89%的环氧化化合物,与此同时,疏水性BMLPF6产生了67%的相同产物。由于在反应介质中促进了可逆的环氧开环,使用其他脂肪酶可产生所需的环氧化衍生物,也可生成1,2-二醇。转化率和选择性取决于IL的性质,反应时间和脂肪酶的选择。

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