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Effect of palladium precursor and preparation method on the catalytic performance of Pd/SiO2 catalysts for benzene hydrogenation

机译:钯前体的影响及制备方法对苯氢化Pd / SiO2催化剂的催化性能

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摘要

Supported Pd catalysts on silica were prepared by different synthesis methods using Pd(Ac)(2) and PdCl2 as salts precursors. The obtained materials were characterized by X-Ray Diffraction (XRD), H-2 chemisorption, and temperature programmed desorption of hydrogen (H-2-TPD). The catalytic performances of these catalysts have been evaluated in the hydrogenation of benzene. The obtained results show that metal dispersion and catalytic activity are strongly dependent on the salts precursor and the method of preparation of the catalyst. The catalysts prepared by hydrazine reduction exhibit higher activity in benzene hydrogenation than that by the polyol reduction method. Moreover, the catalyst prepared with palladium acetate showed higher catalytic activity than those prepared with palladium chloride. The superior catalytic performance of this catalyst in the hydrogenation of benzene was ascribed to a significantly better dispersion of Pd particles on the silica support.
机译:使用Pd(AC)(2)和PdCl2作为盐前体的不同合成方法制备二氧化硅上的支持的Pd催化剂。 通过X射线衍射(XRD),H-2化学吸附和温度编程的氢气(H-2-TPD)的特征在于所得材料。 已经在苯的氢化中评估了这些催化剂的催化性能。 得到的结果表明,金属分散和催化活性强烈依赖于盐前体和催化剂的制备方法。 通过肼降低制备的催化剂表现出比多元醇还原方法的苯氢化活性更高。 此外,用钯乙酸钙制备的催化剂显示出比用氯化钯制备的催化活性更高。 该催化剂在苯的氢化中的优异催化性能归因于在二氧化硅载体上显着更好地分散Pd颗粒。

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