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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Characterization and activity of zinc acetate complex supported over functionalized silica as a catalyst for the production of isopropyl palmitate
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Characterization and activity of zinc acetate complex supported over functionalized silica as a catalyst for the production of isopropyl palmitate

机译:官能化二氧化硅上负载的乙酸锌络合物的表征和活性,该催化剂用作生产棕榈酸异丙酯的催化剂

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摘要

A hybrid silica gel-'succinic acid-zinc acetate' catalyst (SG-SAZnA) was synthesized for the esterification of palmitic acid with isopropanol. The scanning electron microscope (SEM) and X-ray diffraction (XRD) studies indicated the presence of a crystalline compound formed by the interaction of the surface succinic acid fragment and zinc acetate. The high thermal stability and catalytic activity of SG-SAZnA catalyst excluded the possibility of breaking of the bond between SA and the silica gel surface. The SG-SAZnA catalyst was mildly acidic, its surface area and average pore size were in the range of mesopores. The kinetics of the esterification of palmitic acid and isopropanol catalyzed by SG-SAZnA catalyst was studied in a stirred batch reactor for the synthesis of isopropyl palmitate. The effects of stirrer speed, reaction temperature, feed molar ratio, catalyst loading and reusability of the catalyst were evaluated. The SG-SAZnA catalyst activity was found to be higher compared to the hybrid silica gel-zinc acetate material (SG-ZnA) for the esterification reaction. The catalyst showed a long life and could be reused for various catalytic cycles without deactivation. The experimental reaction rates were correlated using different rate models. These models include the pseudo-homogeneous, Eley-Rideal and Langmuir Hinshelwood Hougen Watson models. The Langmuir Hinshelwood Hougen Watson (LHHW) model fitted the experimental kinetic data well over a wide range of operating conditions. The reaction parameters obtained from LHHW model were useful for the design of a catalytic distillation column for the production of isopropyl palmitate. (c) 2005 Elsevier B.V. All rights reserved.
机译:合成了杂化硅胶-“琥珀酸-乙酸锌”催化剂(SG-SAZnA),用于棕榈酸与异丙醇的酯化反应。扫描电子显微镜(SEM)和X射线衍射(XRD)研究表明存在由表面琥珀酸片段和乙酸锌相互作用形成的结晶化合物。 SG-SAZnA催化剂的高热稳定性和催化活性排除了SA与硅胶表面之间键断裂的可能性。 SG-SAZnA催化剂为弱酸性,其表面积和平均孔径在中孔范围内。在搅拌间歇式反应器中研究了SG-SAZnA催化剂催化的棕榈酸和异丙醇酯化反应的动力学。评价了搅拌器速度,反应温度,进料摩尔比,催化剂负载量和催化剂的可重复使用性的影响。发现与用于酯化反应的杂化硅胶-乙酸锌杂化材料(SG-ZnA)相比,SG-SAZnA催化剂活性更高。该催化剂寿命长,可以在不失活的情况下用于各种催化循环。使用不同的速率模型来关联实验反应速率。这些模型包括伪均质模型,Eley-Rideal模型和Langmuir Hinshelwood Hougen Watson模型。 Langmuir Hinshelwood Hougen Watson(LHHW)模型在广泛的工作条件下很好地拟合了实验动力学数据。从LHHW模型获得的反应参数可用于设计用于生产棕榈酸异丙酯的催化蒸馏塔。 (c)2005 Elsevier B.V.保留所有权利。

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