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Ethyl esters production catalyzed by immobilized lipases is influenced by n-hexane and fer-amyl alcohol as organic solvents

机译:通过固定化脂肪酶催化的乙酯产生的产生受N-己烷和FER-戊醇作为有机溶剂的影响

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Lipase stability in organic solvent is crucial for its application in many biotechnological processes as biocatalyst. One way to improve lipase's activity and stability in unusual reaction medium is its immobilization on inert supports. Here, lipases from different sources and immobilized through weak chemical interactions on hydrophobic and ionic supports had their transesterification ability dramatically dependent on the support and also on the solvent that had been used. The ethanolysis of sardine oil was carried out at the presence of cyclohexane and tert-amyl alcohol, in which Duolite A568-Thermomyces lanuginosalipase derivative achieved 49% of ethyl esters production after 24 h in cyclohexane. The selectivity of immobilized lipases was also studied and, after 3 h of synthesis, the reaction with Duolite A568-Thermomyces lanuginosaderivative in cyclohexane produced 24% ethyl ester of eicosapentaenoic acid and 1.2% ethyl ester of docosahexaenoic acid, displaying a selectivity index of 20 times the ethyl ester of eicosapentaenoic acid. Different derivatives ofCandida antarcticalipases fraction B (CALB) and phospholipaseLecitase (R) Ultra (Lecitase) were also investigated. Along these lines, a combination between these factors may be applied to improve the activity and selectivity of immobilized lipases, decreasing the total cost of the process.
机译:有机溶剂中的脂肪酶稳定性对于其在许多生物技术过程中的应用至关重要,作为生物催化剂。改善脂肪酶的活性和不寻常的反应介质中稳定性的一种方法是其对惰性载体的固定化。这里,来自不同来源的脂肪酶并通过弱化学相互作用对疏水性和离子载体的弱化学相互作用的酯交换能力显着依赖于所使用的溶剂和溶剂。在环己烷和叔戊醇的存在下进行沙丁胺油的乙醇溶解,其中Duolite A568-Thermomyces Lanuginosipase衍生物在环己烷中24小时后获得49%的乙酯产生。还研究了固定化脂肪酶的选择性,并在合成3小时后,与二元A568- Thermomyces Lanuginosaderivative的反应在环己烷中产生24%乙基酯的二辛烯酸和十二碳酸十二碳酸的1.2%乙基酯,显示选择性指数为20次己二辛烯酸的乙酯。还研究了不同衍生物的Candida抗氨基酮蛋白级分B(CALB)和磷脂酶酶酶(R)超(lecitase)。沿着这些线,可以应用这些因子之间的组合来改善固定化脂肪酶的活性和选择性,降低该方法的总成本。

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