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Pure silica nanoparticles for liposome/lipase system encapsulation: Application in biodiesel production

机译:用于脂质体/脂肪酶系统封装的纯二氧化硅纳米粒子:在生物柴油生产中的应用

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摘要

In this work we report the synthesis of organic-inorganic solid with spherical morphology where enzyme, as active compounds, is encapsulated. The organic phase of nanospheres is composed of l-α-phosphatidylcholine, as liposome, and lipase from Rhizomucor miehei, as enzyme. The organic phase is covered with porous inorganic silica shell that could stabilize the internal liposomal phase and, consequently, isolate and protect the bioactive molecules. The liposome and silica amount used during the immobilization procedure have been optimized in order to obtain active and stable heterogeneous biocat-alyst. Hybrid-nanospheres containing the enzyme were used to catalyze the transesterification reaction of triolein with methanol to methyl esters, typical biodiesel mixture compounds. The encapsulated enzyme retains its activity after 5 reaction cycles. The total productivity of the best catalyst obtained is higher than that of the free enzyme.
机译:在这项工作中,我们报告了具有球形形态的有机-无机固体的合成,其中酶作为活性化合物被封装。纳米球的有机相由作为脂质体的1-α-磷脂酰胆碱和作为酶的来自Rhizomucor miehei的脂肪酶组成。有机相被多孔的无机二氧化硅壳覆盖,该壳可以稳定内部脂质体相,从而分离并保护生物活性分子。为了获得活性和稳定的异质生物催化剂,已优化了固定过程中使用的脂质体和二氧化硅的量。含有该酶的杂化纳米球用于催化三油精与甲醇的酯交换反应,生成典型的生物柴油混合物化合物甲酯。包封的酶在5个反应周期后仍保留其活性。获得的最佳催化剂的总生产率高于游离酶的总生产率。

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