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首页> 外文期刊>Journal of Biotechnology >Biodiesel production from triolein and short chain alcohols through biocatalysis
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Biodiesel production from triolein and short chain alcohols through biocatalysis

机译:通过生物催化从三油精和短链醇生产生物柴油

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Oleic acid alkyl esters (biodiesel) were synthesised by biocatalysis in solvent-free conditions. Different commercial immobilised lipases, namely Candida antarctica B, Rizhomucor miehei, and Pseudomonas cepacia, were tested towards the reaction between triolein and butanol to produce butyl oleate. Pseudomonas cepacia lipase resulted to be the most active enzyme reaching 100% of conversion after 6h. Different operative conditions such as reaction temperature, water activity, and reagent stoichiometric ratio were investigated and optimised. These conditions were then used to investigate the effect of linear and branched short chain alcohols. Methanol and 2-butanol were the worst alcohols: the former, probably, due to its low miscibility with the oil and the latter because secondary alcohols usually are less reactive than primary alcohols. Conversely, linear and branched primary alcohols with short alkyl chains (C(2)--C(4)) showed high reaction rate and conversion. A mixture of linear and branched short chain alcohols that mimics the residual of ethanol distillation (fusel oil) was successfully used for oleic acid ester synthesis. These compounds are important in biodiesel mixtures since they improve low temperature properties.
机译:在无溶剂条件下通过生物催化合成油酸烷基酯(生物柴油)。测试了不同的商业化固定化脂肪酶,即南极假丝酵母B,Rizhomucor miehei和Cseudomonas cepacia,以检测三油精与丁醇之间的反应以生成油酸丁酯。结果表明假单胞菌脂肪酶是6h后达到转化率100%的最活跃的酶。研究并优化了不同的操作条件,例如反应温度,水活度和试剂化学计量比。然后将这些条件用于研究直链和支链短链醇的作用。甲醇和2-丁醇是最差的醇:前者可能是由于与油的混溶性较低,而后者是因为仲醇通常比伯醇的反应性差。相反,具有短烷基链(C(2)-C(4))的直链和支链伯醇显示出较高的反应速率和转化率。模拟乙醇蒸馏残留物(燃料油)的直链和支链短链醇的混合物已成功用于油酸酯合成。这些化合物在生物柴油混合物中很重要,因为它们改善了低温性能。

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