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Investigation on the enhanced catalytic activity of a Ni-promoted Pd/C catalyst for formic acid dehydrogenation: effects of preparation methods and Ni/Pd ratios

机译:Ni促进的Pd / C催化剂对甲酸脱氢的增强催化活性的研究:制备方法和Ni / Pd比的影响

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In this present work, we studied the effects of preparation methods and Ni/Pd ratios on the catalytic activity of a Ni-promoted Pd/C catalyst for the formic acid dehydrogenation (FAD) reaction. Two catalysts prepared by co-impregnation and sequential impregnation methods showed completely different Pd states and catalytic activities. As the sequentially impregnated catalyst showed better activity than the co-impregnated catalyst, the sequentially impregnated catalyst was investigated further to optimize the ratio of Ni/Pd. The highest catalytic activity for the FAD reaction was obtained over the seq-impregnated catalyst having a 1?:?1.3 molar ratio of Pd?:?Ni. The results of X-ray diffraction (XRD) and transmission electron microscopy (TEM) showed that small particle size is one factor improving the catalytic activity, while those of X-ray photoelectron spectroscopy (XPS) and X-ray adsorption near edge structure (XANES) indicate that the electronic modification of Pd to a positively charged ion is another factor. Thus, it can be concluded that the enhanced catalytic activity of the Ni-promoted Pd/C catalyst is attributed to the role of pre-impregnated Ni in facilitating the activity of Pd by constraining the particle growth and withdrawing an electron from Pd.
机译:在本工作中,我们研究了制备方法和Ni / Pd比例对Ni促进的Pd / C催化剂对甲酸脱氢(FAD)反应的催化活性的影响。通过共浸渍和顺序浸渍方法制备的两种催化剂显示出完全不同的钯态和催化活性。由于顺序浸渍的催化剂显示出比共浸渍的催化剂更好的活性,因此进一步研究了顺序浸渍的催化剂以优化Ni / Pd的比例。在Pd 2 ∶α Ni摩尔比为1 ∶∶1.3的按顺序浸渍的催化剂上,可获得FAD反应的最高催化活性。 X射线衍射(XRD)和透射电子显微镜(TEM)的结果表明,小粒径是提高催化活性的因素之一,而X射线光电子能谱(XPS)和X射线吸附在边缘结构附近( XANES)表示Pd对带正电离子的电子修饰是另一个因素。因此,可以得出结论,Ni促进的Pd / C催化剂的增强的催化活性归因于预浸渍的Ni通过限制颗粒生长和从Pd抽出电子来促进Pd活性的作用。

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