首页> 外文期刊>Bangladesh Journal of Scientific and Industrial Research >Effective synthesis of n-butyl salicylate over wash coated cordierite honeycomb by zirconia and its mixed oxides: a kinetic study
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Effective synthesis of n-butyl salicylate over wash coated cordierite honeycomb by zirconia and its mixed oxides: a kinetic study

机译:氧化锆及其混合氧化物在洗涂堇青石蜂窝结构上有效合成水杨酸正丁酯的动力学研究

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Cordierite honeycombs were coated with solid acid catalysts such as ZrO2 (Z), Mo(VI)/ZrO2 (MZ) and Pt-SO4 2-/ZrO2 (PSZ) were prepared and characterized for their physico-chemical properties. These catalytic materials were characterized for their total surface acidity, crystallinity, functionality, elemental analysis and morphology by using techniques such as NH3 -TPD, PXRD, FTIR, ICP-OES, SEM and TEM respectively. These honeycomb catalysts were used for the liquid phase transesterification reaction of methyl salicylate (MS) with n-butanol (n-BA). Optimization of reaction conditions such as reaction temperature, reaction time, amount of catalysts and molar ratio of the reactants were carried out to obtain maximum yield of transester (n-butyl salicylate). n-butyl salicylate is obtained as major product and di-butyl ether is obtained as minor product. Highest total transester 70 % obtained by MZ and 80 % n-butyl salicylate and 10 % selectivity of di-butyl ether obtained in the presence of 0.4 g of honeycomb coated catalysts at a molar ratio of MS: n-BA 2:1, reaction temperature 403 K and reaction time 4 h. The energy of activation (16.81 and 14.92 kJ mol-1) and temperature coefficient (1.36 and 1.12) values of the MZ and PSZ were obtained from the kinetic studies. Pre-adsorption studies showed that the transesterification reaction methyl salicylate with n-butyl alcohol over honeycomb catalysts follows Langmuir-Hinshelwood mechanism. A reaction mechanism for transesterification is proposed based on the kinetic data. Reactivation and reusability studies of the honeycomb coated as well as powder form of catalysts up to 6 reaction cycles were also studied.Bangladesh J. Sci. Ind. Res.53(1), 63-76, 2018.
机译:堇青石蜂窝被固体酸催化剂如ZrO2(Z),Mo(VI)/ ZrO2(MZ)和Pt-SO4 2- / ZrO2(PSZ)包覆,并对其理化性质进行了表征。通过分别使用诸如NH3-TPD,PXRD,FTIR,ICP-OES,SEM和TEM等技术对这些催化材料的总表面酸度,结晶度,官能度,元素分析和形态进行了表征。这些蜂窝状催化剂用于水杨酸甲酯(MS)与正丁醇(n-BA)的液相酯交换反应。进行反应条件的优化,例如反应温度,反应时间,催化剂的量和反应物的摩尔比,以获得最大的酯交换率(水杨酸正丁酯)。以水杨酸正丁酯为主要产物,以二丁醚为次要产物。 MZ和80%水杨酸正丁酯的最高总酯交换率最高,在0.4 g蜂窝涂层催化剂存在下以MS:n-BA 2:1的摩尔比得到的二丁醚选择性为10%,反应温度403 K,反应时间4 h。通过动力学研究获得了MZ和PSZ的活化能(16.81和14.92 kJ mol-1)和温度系数(1.36和1.12)值。预吸附研究表明,在蜂窝状催化剂上水杨酸甲酯与正丁醇的酯交换反应遵循Langmuir-Hinshelwood机理。基于动力学数据,提出了一种酯交换反应的反应机理。还研究了蜂窝涂层催化剂以及粉末形式的催化剂的再活化和可重复使用性,研究了多达6个反应周期。 Ind.Res.53(1),63-76,2018年。

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