Environmentally-friendly preparation of Sn(II)-BDC supported heteropolyacid as a stable and highly efficient catalyst for esterification reaction

IF 5.8 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Journal of Saudi Chemical Society Pub Date : 2024-03-05 DOI:10.1016/j.jscs.2024.101832
Qiuyun Zhang , Xingyue Hong , Jiao Lei , Yanting Lei , Yigang Yang , Jingsong Cheng , Yulin Hu , Yutao Zhang
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Abstract

Facilitating energy resource deficiency and environmental contamination, this work focuses on sustainable biodiesel production through the esterification reactions of oleic acid (OA) with methanol. To address the reaction, a novel heterogeneous acid catalyst, 12-tungstophosphoric acid (TPA) immobilized on Sn-based MOFs (Sn(II)-BDC) was synthesized via a simple, green solvent, and easy-to-implement synthesis strategy for the first time, and applied effectively for esterification process of OA to produce biodiesel. The structure and composition of as-obtained catalyst have been verified using XRD, FTIR, N2 physisorption, SEM, EDX, TG, Py-FTIR, TPD-NH3, and XPS techniques. The obtained TPA/Sn(II)-BDC catalyst was found to be the best with 60 wt% of TPA loading, which resulted in an OA conversion of 91.7 % at optimized conditions of 0.15 g catalyst loading and methanol to OA molar ratio of 20:1 at temperature of 120 °C in 4 h, and the excellent performance arises from available pores structure, large amounts of acidic sites, good stability and the synergistic catalytic effect of TPA and Sn(II)-BDC. Furthermore, the composite catalyst reusability has been studied for five cycles, and it exhibits an acceptable conversion. This research provides a green and large-scale synthesis route for the sustainable production of biofuels by constructing heteropolyacids/Sn-based MOFs synergistic catalysts.

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以环保方式制备稳定高效的酯化反应催化剂--Sn(II)-BDC支撑杂多酸
为了解决能源资源匮乏和环境污染问题,本研究重点关注通过油酸(OA)与甲醇的酯化反应生产可持续生物柴油。针对该反应,首次通过简单、绿色溶剂和易于实现的合成策略合成了固定在锡基 MOFs(Sn(II)-BDC)上的新型异相酸催化剂--12-钨磷酸(TPA),并将其有效地应用于 OA 的酯化过程以生产生物柴油。利用 XRD、FTIR、N2 物理吸附、SEM、EDX、TG、Py-FTIR、TPD-NH3 和 XPS 等技术验证了所得催化剂的结构和组成。结果表明,在催化剂负载量为 0.15 g、甲醇与 OA 摩尔比为 20:1 的优化条件下,TPA/Sn(II)-BDC 催化剂的性能最佳,TPA 的负载量为 60 wt%,4 h 内的 OA 转化率为 91.7%,其优异的性能源于可用的孔结构、大量的酸性位点、良好的稳定性以及 TPA 和 Sn(II)-BDC 的协同催化效应。此外,还对复合催化剂的可重复使用性进行了五个周期的研究,结果表明其转化率是可以接受的。这项研究通过构建杂多酸/Sn 基 MOFs 协同催化剂,为生物燃料的可持续生产提供了一条绿色的大规模合成路线。
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来源期刊
Journal of Saudi Chemical Society
Journal of Saudi Chemical Society CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
8.90
自引率
1.80%
发文量
120
审稿时长
38 days
期刊介绍: Journal of Saudi Chemical Society is an English language, peer-reviewed scholarly publication in the area of chemistry. Journal of Saudi Chemical Society publishes original papers, reviews and short reports on, but not limited to: •Inorganic chemistry •Physical chemistry •Organic chemistry •Analytical chemistry Journal of Saudi Chemical Society is the official publication of the Saudi Chemical Society and is published by King Saud University in collaboration with Elsevier and is edited by an international group of eminent researchers.
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