Organic Structure-Directing Agent Free Synthesis of Mordenite with Seeds, Used as A Support for Mo Catalysts in the Transesterification of Soybean Oil

E. G. Lima, Fabiana Medeiros Nascimento Silva, Tellys Lins Almeida Barbosa, Meiry Gláucia Freire Rodrigues
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Abstract

This work prepared mordenite using seeds and without organic structure-directing agents (OSDAs). The Mo/Mordenite was prepared through wet impregnation and the catalysts’ performance was checked for transesterification of soybean oil with methanol. The mordenite zeolite was prepared through hydrothermal crystallization under static conditions with a molar composition of 6Na2O:Al2O3:30SiO2:780H2O. The catalyst samples were characterized crystallinity through X-ray diffraction, elemental composition by X-ray fluorescence spectroscopy, Surface areas by N2 adsorption-desorption, surface morphology scanning electron microscopy, functional group by infrared spectroscopy and active sites by temperature programmed desorption of ammonia. The transesterification of soybean oil was carried out using the following parameters: 5% catalyst by weight, 1:12 oil to methanol molar ratio, at 200°C for either 12 h or 24 h. X-ray diffraction patterns showed the characteristic peaks of the mordenite structure. After molybdenum oxide was added, the structure of mordenite zeolite was conserved while the specific surface area was reduced. The morphology can be described as a highly crystalline material with well-defined crystalline particles having a spherical profile characteristic of the typical morphology of sodium mordenite zeolite with a low silicon/aluminum ratio. The catalyst samples exhibited sites of a weak and medium-strength nature. The higher activity of the catalyst (Mo/Mordenite) about mordenite zeolite, could be justified by the existence of molybdenum. The wet impregnation of metal (Mo) on the surface of the MOR zeolite is an effective option to increase the acidity of the solid catalysts. Mordenite with 8.84% Mo could be a promising catalyst for the biodiesel factory.
无导向有机结构剂种子合成丝光沸石,作为Mo催化剂在大豆油酯交换反应中的载体
利用丝光沸石种子制备丝光沸石,不添加有机结构导向剂(OSDAs)。采用湿浸渍法制备Mo/丝光沸石,并考察了催化剂在大豆油与甲醇酯交换反应中的性能。在静态条件下通过水热结晶法制备丝光沸石分子筛,其摩尔组成为6Na2O:Al2O3:30SiO2:780H2O。通过x射线衍射、x射线荧光光谱、N2吸附-脱附、表面形貌扫描电镜、红外光谱、氨程序升温脱附对催化剂样品的结晶度和活性位点进行了表征。在催化剂质量比为5%,油与甲醇摩尔比为1:12的条件下,在200℃下进行12 h或24 h的酯交换反应。x射线衍射图显示丝光沸石结构的特征峰。加入氧化钼后,丝光沸石的结构保持不变,但比表面积降低。其形态可以被描述为一种具有良好定义的晶体颗粒的高结晶材料,具有低硅/铝比的钠丝光沸石的典型形态特征的球形轮廓。催化剂样品表现出弱和中等强度性质的位点。钼/丝光沸石催化剂对丝光沸石分子筛具有较高的催化活性,钼的存在是合理的。在MOR沸石表面湿浸渍金属(Mo)是提高固体催化剂酸性的有效选择。钼含量为8.84%的丝光沸石是一种很有前途的生物柴油催化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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