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Biodiesel Production from Low-Quality Oils Using Heterogeneous Cesium Salts of Vanadium-Substituted Polyoxometalate Acid Catalyst

机译:利用钒取代的多氧酸酸催化剂的非均质铯盐,生物柴油从低质量的油生产

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摘要

This research aims at developing an efficient and reusable catalyst to improve biodiesel production processes. To achieve this, a vanadium-substituted polyoxometalate (POM) acid, namely H6PV3MoW8O40, was firstly prepared, and then the heterogenzation of the homogeneous Keggin-type heteropoly acids was performed by the partial proton substitution by monovalent large cesium cations with the formation of solid Cs2H4PV3MoW8O40 catalysts. Several techniques, such as X-ray diffractometer, Fourier transform infrared, coupled plasma–atomic emission spectrometry, Diffuse reflectance ultraviolet–visible spectrum, thermal gravimetric analysis and N2 adsorption–desorption techniques, were employed to characterize the as-prepared solid catalyst. The solid acid catalyst had the capacity to catalyze both the transesterification of soybean oil and esterification of free fatty acids (FFAs) simultaneously, providing an efficient production process for the production of biodiesel from low-quality oils. Under the operational conditions of a methanol/oil molar ratio of 30:1, a catalyst dosage of 5 wt.%, a reaction temperature of 140 °C, and a reaction duration of 8 h, an oil conversion of 92.2% was attained with the total FFA transformation to biodiesel. Furthermore, the catalyst could be reutilized for several cycles with no significant drop in its activity, thus having great potential for application with a bright perspective in the production of biodiesel, especially from low-quality oil feedstocks.
机译:本研究旨在开发一种高效可重复使用的催化剂,以改善生物柴油生产过程。为了实现这一点,首先制备钒取代的多氧化氢酸盐(POM)酸,即H6PV3Mow8O40,然后通过单价大铯阳离子的部分质子取代进行均质Keggin型杂多酸的异质酶,形成固体CS2H4PV3MOW8O40催化剂。采用若干技术,例如X射线衍射仪,傅里叶变换红外,耦合等离子体 - 原子发射光谱法,弥漫反射率紫外线可见光谱,热重分析和N2吸附 - 解吸技术,以表征以制备的固体催化剂。固体酸催化剂的能力同时催化大豆油和酯化的游离脂肪酸(FFA)的酯化,为生产生物柴油的生产过程提供了高质量的油。在甲醇/油摩尔比为30:1的操作条件下,催化剂剂量为5重量%,反应温度为140℃,反应持续时间为8小时,达到92.2%的油转化率生物柴油的总FFA转换。此外,催化剂可以重新利用几个循环,其活性没有显着下降,因此具有在生物柴油的生产中具有明亮的视角的潜力,特别是来自低质量的油原料。

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