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Immobilization of lipase by encapsulation in silica aerogel

机译:通过包裹在二氧化硅气凝胶中固定脂肪酶

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摘要

Lipase from Burkholderia cepacia was immobilized in a silica matrix and dried in high pressure carbon dioxide media (aerogel). The protic ionic liquid (PIL) was used in the immobilization process by encapsulation. The objective of this work was to evaluate the influence of the drying technique using supercritical carbon dioxide in biocatalysts obtained through the sol-gel technique by evaluating temperature and pressure and, after selecting the best drying conditions, to investigate the application of the technique for the biocatalyst using ionic liquid as an additive in the immobilization process. The results for immobilized biocatalysts showed that the best conditions of pressure and temperature were 100 bar and 25 ?oC, respectively, giving a total activity recovery yield of 37.27% without PIL (EN) and 44.23% with PIL (ENLI). The operational stability of the biocatalysts showed a half-life of 11.4 h for ENLI and 6 h for EN. Therefore, solvent extraction using supercritical CO2, besides shortening drying time, offers little resistance to the immobilization of lipases, since their macropores provide ample room for their molecules. The use of the ionic liquid as an additive in the process studied for the immobilization of enzymes produced attractive yields for immobilization and therefore has potential for industrial applications in the hydrolysis of vegetable oils.
机译:将洋葱伯克霍尔德氏菌的脂肪酶固定在二氧化硅基质中,并在高压二氧化碳介质(气凝胶)中干燥。质子化离子液体(PIL)通过封装用于固定化过程。这项工作的目的是通过评估温度和压力来评估使用超临界二氧化碳干燥技术在通过溶胶-凝胶技术获得的生物催化剂中的影响,并在选择最佳干燥条件后,研究该技术在工业上的应用。在固定化过程中使用离子液体作为添加剂的生物催化剂。固定化生物催化剂的结果表明,最佳压力和温度条件分别为100 bar和25°C,在不使用PIL(EN)的情况下总活性恢复率为37.27%,在使用PIL(ENLI)的情况下总活性回收率为44.23%。生物催化剂的操作稳定性显示ENLI的半衰期为11.4 h,EN的半衰期为6 h。因此,使用超临界二氧化碳萃取溶剂,除了缩短干燥时间外,对脂肪酶的固定化几乎没有抵抗力,因为它们的大孔为其分子提供了充足的空间。在研究的固定化酶的过程中使用离子液体作为添加剂可产生固定化的诱人收率,因此在植物油水解方面具有工业应用潜力。

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