[Catalytic properties of lipase adsorbed on nanocarbon-containing mesoporous silica in esterification and transesterification reactions].

G A Kovalenko, L V Perminova, T V Chuenko, N A Rudina
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Abstract

Nanocarbon-containing mesoporous silica covered with a varying amounts of nanostructured carbon of different morphologies were used as supports to immobilize Thermomyces lanuginosus lipase. The catalytic properties of the prepared biocatalysts were studied in both the transesterification of vegetable (linseed) oil in the presence of ethyl acetate and the esterification of the fatty acid (capric C10:0) in the presence of secondary (isopropyl or isoamyl) alcohols. The physico-chemical characteristics, such as the amount of adsorbed lipase, its specific activity, and the dependence of the activity and stability of the prepared biocatalysts on the support type were evaluated. The Michaelis-Menten kinetics was studied in the esterification of capric acid with isoamyl alcohol. The prepared biocatalysts were shown to retain up to 90% activity for >1000 h in the synthesis of isoamyl caprate. The half-time of the biocatalysts inactivation in the transesterification of linseed oil was found to be more than 700 h at 40°C.

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[含纳米碳介孔二氧化硅吸附脂肪酶在酯化和酯交换反应中的催化性能]。
以含纳米碳的介孔二氧化硅为载体,包覆不同形貌的纳米结构碳,固定化热酵素脂肪酶。研究了所制备的生物催化剂在乙酸乙酯存在下对植物油(亚麻籽)油的酯交换反应和在仲(异丙基或异戊基)醇存在下对脂肪酸(癸酸c10∶0)的酯化反应的催化性能。考察了所制备的生物催化剂的物理化学特性,如吸附脂肪酶的量、比活性以及活性和稳定性与载体类型的关系。研究了癸酸与异戊醇酯化反应的Michaelis-Menten动力学。所制备的生物催化剂在合成己酸异戊酯的1000小时内保持高达90%的活性。在40℃条件下,亚麻油酯交换反应中生物催化剂的失活半衰期大于700 h。
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