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Biodiesel production from soybean and Jatropha oils using cesium impregnated sodium zirconate as a heterogeneous base catalyst

机译:使用铯铯浸渍的锆酸钠作为非均相基础催化剂从大豆和麻疯树油中生产生物柴油

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Cesium modified sodium zirconate (Cs-Na2ZrO3) was prepared by ionic exchange from sodium zirconate (Na2ZrO3), which was synthesized via a solid state reaction. Both ceramics, i.e., pristine Na2ZrO3 and the Cs-Na2ZrO3, were used as basic heterogeneous catalysts in biodiesel production. Soybean and Jatropha oils were used as triglyceride sources for transesterification reactions. Parameters, such as catalyst concentration (between 0.5 and 3 wt%), reaction time, different methanol/vegetable oil molar ratios, and temperature of the reaction, were evaluated. The cesium cation influence was evaluated from the basic transesterification reactivity. The results showed that the introduction of cesium significantly modified the catalytic activity in biodiesel production. Cs enhanced the reaction kinetics in obtaining biodiesel and reduced the reaction time in comparison with pristine Na2ZrO3. The results showed that Cs-Na2ZrO3 as a basic heterogeneous catalyst exhibited the best fatty acid methyl esters (FAME) conversion for soybean oil (98.8%) at 1 wt%, 30:1 methanol/oil ratio, 65 degrees C, and 15 min. The best conditions for Jatropha oil (90.8%) were 3 wt%, 15:1 methanol/oil ratio, 65 degrees C, and 1 h. The impregnation of Na2ZrO3 with cesium represents a very exciting alternative heterogeneous base catalyst for biodiesel production. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过从固态反应合成的锆酸钠(Na2ZrO3)进行离子交换,制备铯修饰的锆酸钠(Cs-Na2ZrO3)。两种陶瓷,即原始的Na 2 ZrO 3和Cs-Na 2 ZrO 3,都被用作生物柴油生产中的基本多相催化剂。大豆油和麻风树油被用作甘油三酸酯源,用于酯交换反应。评估参数,例如催化剂浓度(0.5至3 wt%),反应时间,不同的甲醇/植物油摩尔比和反应温度。从基本的酯交换反应性评估铯阳离子的影响。结果表明,铯的引入显着改变了生物柴油生产中的催化活性。与原始Na 2 ZrO 3相比,Cs增强了获得生物柴油的反应动力学,并缩短了反应时间。结果表明,Cs-Na2ZrO3作为碱性多相催化剂在1 wt%,30:1甲醇/油比,65摄氏度和15分钟的条件下表现出最佳的脂肪酸甲酯转化率(98.8%)。 。麻疯树油的最佳条件(90.8%)为3 wt%,甲醇/油比为15:1、65摄氏度和1小时。用铯浸渍Na2ZrO3代表了非常令人兴奋的生物柴油生产的非均相碱催化剂。 (C)2016 Elsevier Ltd.保留所有权利。

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