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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Synthesis of biodiesel and acetins by transesterification reactions using novel CaSn(OH)(6) heterogeneous base catalyst.
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Synthesis of biodiesel and acetins by transesterification reactions using novel CaSn(OH)(6) heterogeneous base catalyst.

机译:使用新型CaSn(OH)(6)异质碱催化剂通过酯交换反应合成生物柴油和醋酸甘油酯。

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Metal hydroxy stannate is explored for the first time as a solid base catalyst for transesterification reactions. The catalyst was synthesized by co-precipitation method and characterized by PXRD, SEM, EDS, TGA, surface area and FT-IR measurements. In this work, we demonstrated metal hydroxy stannate as an efficient catalyst for the synthesis of biodiesel and to convert its byproduct glycerol into acetins. Performance of the catalyst was checked with both edible oil (sunflower) and non edible oils like waste cooking oil, jatropha, honge and simarouba. CaSn(OH)(6) gave high biodiesel yield with the tested oils at lower reaction temperature (65 degrees C). The performance of CaSn(OH)(6) was better than other solid base catalysts like CaO, MgO, Mg/Al HTc and KF/CaO. Separation of biodiesel from un-reacted oil and glycerol was carried out using solvent extraction method and isolated yield of biodiesel was calculated. Conditions like temperature, amount of catalyst and mole ratio were studied for both the reactions to get optimum yield of end products. Fuel properties of synthesized biodiesel were tested and compared with international standards. Catalyst showed good thermal stability and reusability with consistent activity for both the reactions. (C) 2016 Elsevier B.V. All rights reserved.
机译:羟基锡酸金属盐首次被用作酯交换反应的固体碱催化剂。通过共沉淀法合成了该催化剂,并通过PXRD,SEM,EDS,TGA,表面积和FT-IR测量对其进行了表征。在这项工作中,我们证明了羟基锡酸金属盐是合成生物柴油并将其副产物甘油转化为乙酸甘油酯的有效催化剂。食用油(向日葵)和非食用油(如废食用油,麻风树,丁香和西马鲁巴)都检查了催化剂的性能。 CaSn(OH)(6)在较低的反应温度(65摄氏度)下使用测试的油可获得较高的生物柴油收率。 CaSn(OH)(6)的性能优于CaO,MgO,Mg / Al HTc和KF / CaO等其他固体碱催化剂。使用溶剂萃取法从未反应的油和甘油中分离出生物柴油,并计算了分离出的生物柴油产率。研究了温度,催化剂量和摩尔比等条件,以得到最终产物的最佳收率。测试了合成生物柴油的燃料特性,并与国际标准进行了比较。催化剂显示出良好的热稳定性和可重复使用性,并且对于两个反应均具有一致的活性。 (C)2016 Elsevier B.V.保留所有权利。

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