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Immobilised Lipase on Structured Supports Containing Covalently Attached Ionic Liquids for the Continuous Synthesis of Biodiesel in scCO2

机译:固定化脂肪酶的结构化载体,其含有共价连接的离子液体,用于在SCCO2中连续合成生物柴油

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Different nanostructured supports, based on 1-decyl-2-methyimidazolium cations covalently attached to a polystyrene divinylbenzene porous matrix, were used as carriers to immobilise Candida antarctica lipase B. The suitability of these immobilised lipase derivatives for the synthesis of biodiesel (methyl oleate) by the methanolysis of triolein has been tested in both tert-butanol and supercritical (sc)CO2 (18 MPa, 45 degrees C) as reaction media. The use of modified supports with low ionic-liquid loading covalently attached to the main polymeric backbone chains provide structured materials that led to the best biodiesel yields (up to 95%) and operational stability (85% biodiesel yield after 45 cycles of 84 h) in scCO(2) (45 degrees C, 18 MPa). The presence of tert-butanol as an inert cosolvent in the scCO(2) phase at the same concentration as triolein was key to avoid poisoning the biocatalyst through the blockage of its active sites by the polar byproduct (glycerol) produced in the biodiesel synthesis.
机译:基于1-癸基-2-甲基咪唑鎓阳离子的不同纳米结构支撑件用于固定念珠菌的载体以固定念珠菌抗原脂肪酶Base B.这些固定化脂肪酶衍生物对生物柴油合成的适用性(甲基olate)通过作为反应介质的叔丁醇和超临界(SC)CO 2(18MPa,45℃)的甲醇分解已在叔丁醇和超临界(SC)CO 2(18MPa,45℃)中。使用具有低离子液体载荷的改性载体与主要的聚合物骨架链共价连接,提供了导致最佳生物柴油产量(高达95%)和操作稳定性的结构材料(45次84小时后85%的生物柴油产量)在SCCO(2)(45摄氏度,18MPa)。作为三烯醇的SCCO(2)相中作为惰性溶胶作为惰性的溶剂的存在是kiolein的关键,以避免通过生物柴油合成中产生的极性副产品(甘油)通过其活性位点堵塞生物催化剂。

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