Department of Food and Chemical Engineering, URI - Erechim, 1621, Sete de Setembro Av., Erechim, RS, 99709-910, Brazil.
Appl Biochem Biotechnol. 2021 Apr;193(4):1072-1085. doi: 10.1007/s12010-020-03484-7. Epub 2021 Jan 6.
MCM-41 and MCM-48 with niobium were successfully synthesized using 1-tetradecyl-3-methylimidazolium chloride ([CMI]Cl) as a structure-directing agent. The best Si/Nb molar ratio was chosen (Si/Nb = 20) and the CALB enzyme was immobilized in situ in the synthesized Nb-MCM. SEM micrographs showed the formation of very regular spherical agglomerates with a diameter between 0.25 and 0.75 μm. The material presented a surface area of 954 and 704 m/g and a pore volume of 0.321 and 0.286 cm/g, for Nb-MCM-41 and Nb-MCM-48, respectively. Also, both materials showed a pore size of 2.261 nm. The number of recycles obtained for the CALB enzyme immobilized in Nb-MCM-41 and Nb-MCM-48 was 26 recycles with a residual activity of 49.62% and 16 recycles with a residual activity of 53.01%, respectively. For both materials, enzymatic activity remained stable for 5 months of storage at room temperature and refrigeration. The supports were able to catalyze the esterification reaction at 40, 60, and 80 °C, showing industrial application in reactions that require high temperatures. This methodology allows the preparation of new highly active and selective enzyme catalysts using niobium and [CMI]Cl. Also, the new materials can provide greater viability in processes, ensuring a longer service life of catalysts. Graphical abstract.
使用 1-十四烷基-3-甲基咪唑氯化物 ([CMI]Cl) 成功合成了具有铌的 MCM-41 和 MCM-48。选择了最佳的 Si/Nb 摩尔比(Si/Nb = 20),并将 CALB 酶原位固定在合成的 Nb-MCM 中。SEM 显微照片显示形成了非常规则的球形团聚体,直径在 0.25 和 0.75 μm 之间。该材料的比表面积分别为 954 和 704 m/g,孔体积分别为 0.321 和 0.286 cm/g,对于 Nb-MCM-41 和 Nb-MCM-48 分别。此外,两种材料的孔径均为 2.261 nm。固定在 Nb-MCM-41 和 Nb-MCM-48 中的 CALB 酶的循环次数分别为 26 次,剩余活性为 49.62%,16 次,剩余活性为 53.01%。对于这两种材料,在室温下和冷藏条件下储存 5 个月后,酶活性保持稳定。该载体能够在 40、60 和 80°C 下催化酯化反应,表明在需要高温的反应中具有工业应用前景。该方法允许使用铌和 [CMI]Cl 制备新的高活性和选择性酶催化剂。此外,新材料可以为工艺提供更大的可行性,确保催化剂具有更长的使用寿命。