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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Development of mesoporous Al,B-MCM-41 materials - Effect of reaction temperature on the catalytic performance of Al,B-MCM-41 materials for the cyclohexanone oxime rearrangement
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Development of mesoporous Al,B-MCM-41 materials - Effect of reaction temperature on the catalytic performance of Al,B-MCM-41 materials for the cyclohexanone oxime rearrangement

机译:中孔Al,B-MCM-41材料的开发-反应温度对Al,B-MCM-41材料对环己酮肟重排催化性能的影响

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A series of aluminum-boron-silicate MCM-41 mesoporous materials and their counterparts treated with NH4F aqueous solution were synthesized and characterized by using XRD, MAS NMR, nitrogen physisorption, DRIFT, TG-DTA, TP/MS and pyridine adsorption. All of the samples showed typical MCM-41 structural and textural properties. Al-27 MAS NMR showed that the aluminum environment was mainly four coordinated and six-coordinated aluminum for non-fluorinated samples and fluorinated ones, respectively. Boron was in the trigonal framework environment at ca. catalytic reaction temperatures and the NH4F treatment did not affect the boron environment in our Al,B-MCM-41 materials. All of the Al,B-MCM-41 materials studied contained both Bronsted and Lewis acid sites. However, the strong acid Bronsted/Lewis ratios decreased in the fluorinated catalysts. Moreover, the influence of temperature was studied on the cyclohexanone oxime conversion and the product selectivity in the 623-798 K range. Results indicated that temperatures lower than 748 K favored Beckmann rearrangement to E-caprolactam, whereas, at higher temperatures the main reaction was cyclohexanone oxime hydrolysis to cyclohexanone. The aluminum-boron-silicate MCM-41 mesoporous materials treated with NH4F improved both the selectivity to epsilon-caprolactam (related mainly to boron content) and their life span (related to their lower ratios of strong Bronsted/Lewis acid sites). (c) 2006 Elsevier B.V. All rights reserved.
机译:合成了一系列的铝硼硅酸盐MCM-41介孔材料及其用NH 4 F水溶液处理的对应物,并通过XRD,MAS NMR,氮物理吸附,DRIFT,TG-DTA,TP / MS和吡啶吸附进行了表征。所有样品均显示出典型的MCM-41结构和织构特性。 Al-27 MAS NMR结果表明,对于非氟化样品和氟化样品,铝环境主要为四配位铝和六配位铝。硼在约200摄氏度的三角框架环境中。催化反应温度和NH4F处理不会影响我们的Al,B-MCM-41材料中的硼环境。研究的所有Al,B-MCM-41材料均包含布朗斯台德和路易斯酸位。然而,在氟化催化剂中强酸的布朗斯台德/刘易斯比率降低。此外,研究了温度对623-798 K范围内环己酮肟转化率和产物选择性的影响。结果表明,低于748 K的温度有利于Beckmann重排成E-己内酰胺,而在较高的温度下,主要反应是环己酮肟水解成环己酮。用NH4F处理的铝硼硅酸盐MCM-41介孔材料不仅提高了对ε-己内酰胺的选择性(主要与硼含量有关),而且还改善了它们的寿命(与强布朗斯台德/路易斯酸位点的比率较低有关)。 (c)2006 Elsevier B.V.保留所有权利。

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