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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Influence of calcination temperature on catalytic, acid and textural properties of SO42-/La2O3/HZSM-5 type catalysts for biodiesel production by esterification
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Influence of calcination temperature on catalytic, acid and textural properties of SO42-/La2O3/HZSM-5 type catalysts for biodiesel production by esterification

机译:钙化温度对SO42- / La2O3 / HZSM-5型催化,酸性和纹理性能的影响酯化酯化生物柴油生产的催化,酸和纹理性质

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摘要

In this study, the efficiency of catalysts based on La2O3/SO42- supported on HZSM-5 zeolites was evaluated for the biodiesel production by esterification. The effect of a prior dealumination of the zeolite on the prepared catalysts properties was analyzed, as well as the influence of the calcination temperature. These materials were characterized by TGA, XRD, N-2 adsorption/desorption, FTIR, and FTIR with adsorption of probe molecules (pyridine and collidine) for the identification and quantification of acid sites. Model reaction of double bond position isomerization of 1-butene was also performed, in order to evaluate the acidity of the new catalysts produced. These solids were tested in the esterification reaction of oleic acid in presence of methanol and the influence of the molar ratio between the reactants was evaluated. The results indicate that HZSM-5 modified with La2O3/SO42- can be an efficient catalyst for the esterification reaction. Whatever the reactants molar ratio used, the sulfated catalysts were more efficient than the starting zeolite in the esterification of oleic acid. The dealumination of the zeolite prior to the impregnation with SO42- /La2O3 leads to materials with improved properties. Moreover, low temperature calcination (350 degrees C) was revealed to also produce catalysts with more interesting properties. The enhancement of the external surface properties (acidity and area) was the main parameter influencing the activity of the catalysts for the considered reaction.
机译:在该研究中,通过酯化评价基于La2O3 / SO42 - 支持HzSM-5沸石的催化剂的效率。通过酯化评价生物柴油生产。分析了沸石对制备催化剂性能的现有渗透率的影响,以及煅烧温度的影响。这些材料的特征在于TGA,XRD,N-2吸附/解吸,FTIR和FTIR,其吸附探针分子(吡啶和唑)用于鉴定和定量酸性位点。还进行了1-丁烯的双键位置异构化的模型反应,以评价所产生的新催化剂的酸度。在甲醇存在下,在油酸的酯化反应中测试这些固体,评价反应物之间的摩尔比的影响。结果表明,用La2O3 / SO42改性HZSM-5可以是酯化反应的有效催化剂。无论使用反应物摩尔比,硫酸化催化剂比油酸酯化中的起始沸石更有效。用SO42- / La2O3浸渍前沸石的渗透率导致具有改进性质的材料。此外,揭示了低温煅烧(350℃),也产生具有更有趣性质的催化剂。外表表面性质(酸度和面积)的增强是影响催化剂活性的主要参数,用于考虑反应。

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