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Calcium diglyceroxide synthesized by mechanochemical treatment, its characterization and application as catalyst for fatty acid methyl esters production

机译:机械化学处理法合成甘油二酸钙及其表征及作为脂肪酸甲酯生产催化剂的应用

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In the present work, calcium diglyceroxide (CaDG) was synthesized by mechanochemical treatment of CaO dispersed in glycerol, and characterized by X-ray diffraction (XRD), thermal analysis (TGA/DTA), infrared spectroscopy (FTIR), and Hammett indicator method for base strength determination. The obtained CaDG was tested as a catalyst in the methanolysis of sunflower oil under different working conditions: catalyst amount, agitation speed, temperature and methanol to oil molar ratio. The main advantage of CaDG used as a catalyst in methanolysis is related to the initial rate of methanolysis. According to many previously reported data in literature the mass transfer resistance controls the overall rate of methanolysis, but it is not observed with CaDG used as catalyst. Recently developed kinetic model that describes the complex methanolysis process was successfully applied for this system and model parameters were determined, supporting the explanation of the physical effect of the CaDG catalyst on the reduction of mass transfer resistance and increasing the rate of methanolysis. The absence of mass transfer rate at the beginning of process is a consequence of the nature of the CaDG, which is adsorbed at the droplet interfaces between methanol and oil leading to the formation of fine dispersion of these two immiscible liquids. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本工作中,通过对分散在甘油中的CaO进行机械化学处理,合成了甘油二酸钙(CaDG),并通过X射线衍射(XRD),热分析(TGA / DTA),红外光谱(FTIR)和哈米特指示剂法进行了表征。用于确定基础强度。在不同的工作条件下,将得到的CaDG作为催化剂在葵花籽油的甲醇分解中进行测试:催化剂用量,搅拌速度,温度和甲醇与油的摩尔比。 CaDG用作甲醇分解催化剂的主要优点与甲醇分解的起始速率有关。根据文献中许多先前报道的数据,传质阻力控制着甲醇分解的总速率,但是用CaDG作为催化剂未观察到。最近开发的描述复杂甲醇分解过程的动力学模型已成功应用于该系统,并确定了模型参数,从而支持了CaDG催化剂对降低传质阻力和提高甲醇分解速率的物理作用的解释。工艺开始时没有传质速率是CaDG的性质的结果,CaDG吸附在甲醇和油之间的液滴界面处,导致这两种不混溶的液体形成精细分散。 (C)2015 Elsevier Ltd.保留所有权利。

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