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A comparative study of biocatalysis in non-conventional solvents: Ionic liquids, supercritical fluids and organic media

机译:非常规溶剂中的生物催化比较研究:离子液体,超临界流体和有机介质

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The catalytic activities of cutinase immobilized on zeolite NaY and Candida antarctica lipase B immobilized on an acrylic resin ( Novozym 453) were measured in a model transesterification reaction in three imidazolium cation-based ionic liquids (RTILs), supercritical ethane (sc-ethane), sc-CO2 and n-hexane, at a water activity (a(W)) of 0.2 and 0.7. The transesterification activity of cutinase was highest and similar in 1-n-butyl-3-methylimidazolium hexafluorophosphate ([C(4)mim][PF6]), sc-ethane and n-hexane, more than one order of magnitude lower in sc-CO2, and increased with an increase in a(W). Hydrolysis was not detected in sc-fluids and n-hexane, and was observed in RTILs at a(W) 0.7 only. Both initial rates of transesterification and of hydrolysis of Novozym decreased with an increase in a(W). sc-CO2 did not have a deleterious effect on Novozym activity, which was as high as in sc-ethane and n-hexane. The low reaction rates obtained in this case in RTILs suggested the existence of internal diffusion limitations absent in the cutinase preparation where the enzyme is only adsorbed at the surface of the support. sc-CO2 did not adversely affect the catalytic activity of cutinase suspended in [C(4)mim][PF6], suggesting a protective effect of the RTIL. In the case of Novozym, a marked increase in the rate of transesterification was obtained in the [C(4)mim][PF6]/sc-CO2 system, compared to the RTIL alone. This may reflect improved mass transfer of solutes to the pores of the immobilization matrix due to a high concentration of dissolved CO2 and a reduction in viscosity of the RTIL.
机译:在三种咪唑阳离子型离子液体(RTILs),超临界乙烷(sc-乙烷), sc-CO2和正己烷,水活度(a(W))为0.2和0.7。角质酶的酯交换活性最高,在六氟磷酸1-正丁基-3-甲基咪唑鎓([C(4)mim] [PF6]),sc-乙烷和正己烷中,酯交换酶的活性最高,sc降低了一个数量级。 -CO2,并随着a(W)的增加而增加。在sc-流体和正己烷中未检测到水解,仅在a(W)0.7的RTIL中观察到水解。酯交换的初始速率和诺维信的水解速率均随a(W)的增加而降低。 sc-CO2对Novozym活性没有有害作用,与在sc-乙烷和正己烷中一样高。在这种情况下,在RTILs中获得的低反应速率表明角质酶制剂中不存在内部扩散限制,其中酶仅吸附在支持物表面上。 sc-CO2不会对[C(4)mim] [PF6]中悬浮的角质酶的催化活性产生不利影响,表明RTIL具有保护作用。在Novozym的情况下,与单独的RTIL相比,在[C(4)mim] [PF6] / sc-CO2系统中,酯交换率显着提高。这可能反映出由于高浓度的溶解CO2和RTIL粘度的降低,溶质向固定化基质的孔的质量转移得以改善。

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