Karakterisasi material mesopori Ni/MCM-41 dan pengaruh penambahan logam nikel terhadap tingkat keasaman material

S. M. T. Tengker, Jenny Kumajas
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引用次数: 1

Abstract

Mesoporous material MCM-41 cannot be used directly as a catalyst, so need to be added metals or nonmetals to create an acidic site. Nickel is a Lewis acid metal because it is able to accept lone pairs of electrons from ligands to form complex compounds. The purpose of this study was to produce mesoporous material Ni/MCM-41 and to see the effect of the addition Nickel metal to the acidity level of mesoporous material Ni/MCM-41.Tthe ion exchange method is used to produce Ni/MCM-41 and the gravimetric method to test the acidity of the material. The MCM-41 used for Ni/MCM-41 synthesis has an x-ray diffraction pattern with a hexagonal structure that is identical with the MOC researchers results. BET results is showed the type IV of the Langmuir adsorption isotherm with a surface area of ​​Ni/MCM-41 material 775.9 m2/g, pore volume 0.81 cc/g and pore radius 15.2 Å. TEM characterization shows the morphological shape of Ni/MCM-41 in the form of hexagonal structure. The acidity test results of Ni/MCM-41 material have a higher acidity level compared to MCM-41. Based on the research data, it can be concluded that Ni/MCM-41 has a morphological form with a hexagonal structure, has a large surface area and has a pore size classified as mesoporous material and has a higher acidity level than the MCM-41 synthesized.
中孔物质的特性:mc -41和镍对物质酸化水平的影响
介孔材料MCM-41不能直接用作催化剂,因此需要添加金属或非金属来产生酸性位点。镍是一种路易斯酸性金属,因为它能够接受来自配体的孤电子对形成复杂的化合物。本研究的目的是制备介孔材料Ni/MCM-41,并观察金属镍的加入对介孔材料Ni/MCM-41酸度水平的影响。采用离子交换法制备Ni/MCM-41,采用重量法测定材料的酸度。用于Ni/MCM-41合成的MCM-41的x射线衍射图具有六方结构,与MOC研究人员的结果一致。BET结果显示,Ni/MCM-41材料的表面积为775.9 m2/g,孔体积为0.81 cc/g,孔半径为15.2 Å, Langmuir等温线为IV型。TEM表征表明Ni/MCM-41的形貌为六边形结构。与MCM-41相比,Ni/MCM-41材料的酸度测试结果具有更高的酸度水平。根据研究数据,可以得出Ni/MCM-41具有六方结构的形态,具有较大的表面积,孔径属于介孔材料,并且具有比合成的MCM-41更高的酸度水平。
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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