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
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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