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利用南极假丝酵母脂肪酶 MOF 生物催化剂从棕榈油生产生物柴油:动力学和热力学研究。

Biodiesel Production Using Palm Oil with a MOF-Lipase B Biocatalyst from Candida Antarctica: A Kinetic and Thermodynamic Study.

机构信息

Facultad de Ciencias, Departamento de Química, Universidad Nacional de Colombia, Bogotá 111231, Colombia.

Grupo de Investigación en Sólidos Porosos y Calorimetría, Facultad de Ciencias, Departamento de Química, Universidad de los Andes, Bogotá 111711, Colombia.

出版信息

Int J Mol Sci. 2023 Jun 28;24(13):10741. doi: 10.3390/ijms241310741.

Abstract

This research presents the results of the immobilization of Candida Antarctica Lipase B (CALB) on MOF-199 and ZIF-8 and its use in the production of biodiesel through the transesterification reaction using African Palm Oil (APO). The results show that the highest adsorption capacity, the 26.9 mg·g Lipase, was achieved using ZIF-8 at 45 °C and an initial protein concentration of 1.20 mg·mL. The results obtained for the adsorption equilibrium studies allow us to infer that CALB was physically adsorbed on ZIF-8 while chemically adsorbed with MOF-199. It was determined that the adsorption between Lipase and the MOFs under study better fit the Sips isotherm model. The results of the kinetic studies show that adsorption kinetics follow the Elovich model for the two synthesized biocatalysts. This research shows that under the experimental conditions in which the studies were carried out, the adsorption processes are a function of the intraparticle and film diffusion models. According to the results, the prepared biocatalysts showed a high efficiency in the transesterification reaction to produce biodiesel, with methanol as a co-solvent medium. In this work, the catalytic studies for the imidazolate, ZIF-8, presented more catalytic activity when used with CALB. This system presented 95% biodiesel conversion, while the biocatalyst formed by MOF-199 and CALB generated a catalytic conversion percentage of 90%. Although both percentages are high, it should be noted that CALB-MOF-199 presented better reusability, which is due to chemical interactions.

摘要

本研究展示了将南极假丝酵母脂肪酶 B(CALB)固定在 MOF-199 和 ZIF-8 上的结果,并将其用于通过使用非洲棕榈油(APO)的酯交换反应生产生物柴油。结果表明,在 45°C 和初始蛋白质浓度为 1.20mg·mL 的条件下,ZIF-8 达到了最高的吸附容量,为 26.9mg·g Lipase。吸附平衡研究的结果表明,CALB 是通过物理吸附在 ZIF-8 上,而通过化学吸附在 MOF-199 上。确定了在研究的 MOFs 下脂肪酶之间的吸附更好地符合 Sips 等温线模型。动力学研究的结果表明,对于两种合成的生物催化剂,吸附动力学都符合 Elovich 模型。本研究表明,在进行研究的实验条件下,吸附过程是内颗粒和膜扩散模型的函数。根据结果,在甲醇作为共溶剂介质的情况下,制备的生物催化剂在酯交换反应生产生物柴油中表现出了很高的效率。在这项工作中,当与 CALB 一起使用时,咪唑盐 ZIF-8 的催化研究表现出更高的催化活性。该体系的生物柴油转化率达到 95%,而由 MOF-199 和 CALB 形成的生物催化剂的催化转化率为 90%。尽管这两个百分比都很高,但应注意的是,CALB-MOF-199 具有更好的可重复使用性,这是由于化学相互作用所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/218a/10342100/ff6fb73c40fe/ijms-24-10741-g001.jpg

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