首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Preparation of Cu/SBA-15 catalysts by different methods for the hydrogenolysis of dimethyl maleate to 1,4-butanediol
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Preparation of Cu/SBA-15 catalysts by different methods for the hydrogenolysis of dimethyl maleate to 1,4-butanediol

机译:用不同方法制备Cu / SBA-15催化剂,用于马来酸二甲酯氢解为1,4-丁二醇

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摘要

Mesoporous siliceous SBA-15-supported Cu catalysts have been prepared by different methods and systematically characterized. The results revealed that the incipient wetness impregnation (IWI) method gives poor dispersion of copper species, whereas much better dispersion is found in catalysts prepared by the deposition precipitation (DP), grafting, and homogeneous deposition precipitation (HDP) methods. The Cu/SBA-15 catalyst prepared by the grafting method is rich in Cu~+, while a partial destruction of the hexagonal mesostructure of SBA-15 occurs in the catalyst prepared by the HDP method. In gas phase hydrogenolysis of dimethyl maleate (DMM) to 1,4-butanediol (BDO), the hydrogenolysis activities of the catalysts follow the sequence of the metallic Cu surface areas; the catalyst prepared by the HDP method exhibits the highest activity and selectivity. Irrespective of the much smaller metallic Cu surface area of the catalyst prepared by the grafting method, this catalyst exhibits only slightly lower activity than that prepared by the DP method, suggesting that Cu~+ also participates in DMM hydrogenolysis. The reaction conditions are further investigated over the Cu/SBA-15 catalyst prepared by the HDP method, aiming to obtain a high yield of BDO.
机译:用不同的方法制备了介孔硅质SBA-15负载的Cu催化剂,并对其进行了系统表征。结果表明,初期湿润浸渍(IWI)方法使铜的分散性差,而在通过沉积沉淀(DP),接枝和均相沉积沉淀(HDP)方法制备的催化剂中发现更好的分散性。通过接枝方法制备的Cu / SBA-15催化剂富含Cu〜+,而通过HDP方法制备的催化剂中发生了SBA-15六方介观结构的部分破坏。在马来酸二甲酯(DMM)的气相氢解为1,4-丁二醇(BDO)的过程中,催化剂的氢解活性遵循金属Cu表面积的顺序。 HDP法制备的催化剂表现出最高的活性和选择性。不管用接枝方法制得的催化剂的金属Cu表面积小得多,该催化剂的活性仅比用DP法制得的催化剂稍低,这表明Cu〜+也参与了DMM的氢解反应。在通过HDP方法制备的Cu / SBA-15催化剂上进一步研究了反应条件,目的是获得高产率的BDO。

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