Construction of the novel PMA@Bi-MOF catalyst for effective fatty acid esterification

催化作用 磷钼酸 物理吸附 甲醇 油酸 化学 核化学 傅里叶变换红外光谱 X射线光电子能谱 原材料 摩尔比 化学工程 有机化学 生物化学 工程类
作者
Qiuyun Zhang,Yanting Lei,Luyan Li,Lei Jiao,Mengmeng Hu,Taoli Deng,Yutao Zhang,Peihua Ma
出处
期刊:Sustainable Chemistry and Pharmacy [Elsevier BV]
卷期号:33: 101038-101038 被引量:36
标识
DOI:10.1016/j.scp.2023.101038
摘要

A novel Bi-based metal-organic framework impregnated phosphomolybdic acid ([email protected]) catalyst has been fabricated via a simple hydrothermal procedure, and successfully applied in the preparation of biodiesel using oleic acid (OA) as the raw material. The [email protected] composites were exhaustively characterized with the help of FTIR, XRD, TPD-NH3, SEM-EDX, N2-physisorption, TGA, and XPS analyses. Experimental findings showed that the [email protected] exhibited a higher activity than that of [email protected] and Bi-BTC, attributed to its textural property, the presence of more acid sites with higher strength, and synergistic catalytic effects between PMA and Bi-BTC. The optimum conditions for esterification of OA, with a conversion of up to 92.5%, were found to be a molar ratio of methanol to OA of 20:1 and 0.15g [email protected] catalyst at 160 °C in 3 h. Meanwhile, reused studies indicated that the OA conversion reached more than 80% after seven reaction cycles. Furthermore, the activation energy of esterification catalyzed by [email protected] was also calculated as 54.8 kJ/mol. It is expected that our study provides an efficient route to biofuel production involving polyoxometalates/MOF synergistic catalysts.
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