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用于酶固定化以生产生物柴油的ZIF-8修饰的特松特拉火山石的制备

fabrication of ZIF-8 decorated tezontle for enzyme immobilization towards biodiesel production.

作者信息

Rodríguez-Mejía Yetzin, Bogireddy Naveen Kumar Reddy, Romero-Romero Fernando, Basavanag-Unnamatla M V, Agarwal Vivechana, Varela-Guerrero Victor

机构信息

Universidad Autónoma del Estado de México, Facultad de Química Paseo Colón esq. Paseo Tollocan s/n Toluca CP 50120 Mexico

Centro de Investigaciones Químicas, UAEM Av. Univ. 2001, Col. Chamilpa Cuernavaca Morelos 62210 Mexico.

出版信息

RSC Adv. 2025 Jul 28;15(33):26632-26646. doi: 10.1039/d5ra02711j. eCollection 2025 Jul 25.

Abstract

Efficient and cost-effective materials for enzyme immobilization have been sought to enhance the stability and recyclability of enzymes. We have developed highly efficient, stable, resistant, and reproducible biocatalysts in this work. The fabricated catalysts (ZIF-8/tezontle/lipase) are economical, stable, and obtained at room temperature. The prepared materials were confirmed through diffraction planes and crystals of ZIF-8 (hexagonal shape) on the surface with a size of 0.715 to 1.42 μm. The characteristic elements of ZIF-8, such as N and Zn, and functional groups in the prepared composites were also analyzed. The thermal stability profiles were conducted to determine the total composition loss of the prepared material compared to pristine ZIF-8. As for the feedstock and DB, it is observed that they have an acidity index of 0.67 mg KOH per g for oil and 0.2 mg KOH per g for DB, complying with the parameters established by ASTM, while the moisture increases for the DB (0.075%) because the BD is hygroscopic. In addition, it exhibited a recyclability efficiency of 91% for the composite material compared to pristine tezontle and ZIF-8 catalysts due to its comparable porosity, surface area, and surface functional groups that allow enzyme-support binding, thereby enabling lipase recyclability. Post-biodiesel analysis confirmed the reduction in chain length during the transesterification process.

摘要

人们一直在寻找高效且经济高效的酶固定化材料,以提高酶的稳定性和可回收性。在这项工作中,我们开发了高效、稳定、耐用且可重复的生物催化剂。制备的催化剂(ZIF-8/tezontle/脂肪酶)经济实惠、稳定,且在室温下即可获得。通过ZIF-8(六边形)在表面的衍射面和晶体(尺寸为0.715至1.42μm)对制备的材料进行了确认。还分析了ZIF-8的特征元素,如N和Zn,以及制备的复合材料中的官能团。进行了热稳定性分析,以确定与原始ZIF-8相比制备材料的总成分损失。至于原料和DB,观察到它们的酸值分别为油0.67毫克KOH/克和DB 0.2毫克KOH/克,符合ASTM规定的参数,而DB的水分增加(0.075%),因为BD具有吸湿性。此外,由于其可比的孔隙率、表面积和表面官能团允许酶与载体结合,从而实现脂肪酶的可回收性,该复合材料的可回收效率与原始tezontle和ZIF-8催化剂相比为91%。生物柴油后分析证实了酯交换过程中链长的减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6ed/12302128/51c871f7d7c8/d5ra02711j-s1.jpg

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