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通过详细动力学建模对镍催化剂进行能量映射。

Energetic mapping of Ni catalysts by detailed kinetic modeling.

作者信息

Bjørgum Erlend, Chen De, Bakken Mari Grande, Christensen Kjersti Omdahl, Holmen Anders, Lytken Ole, Chorkendorff Ib

机构信息

Department of Chemical Engineering, Norwegian University of Science and Technology (NTNU), N-7491 Trondheim, Norway.

出版信息

J Phys Chem B. 2005 Feb 17;109(6):2360-70. doi: 10.1021/jp048850e.

Abstract

Temperature-programmed desorption (TPD) of CO has been performed on supported and unsupported nickel catalysts. The unsupported Ni catalyst consists of a Ni(14 13 13) single crystal which has been studied under ultrahigh vacuum conditions. The desorption energy for CO at low CO surface coverage was found to be 119 kJ/mol, and the binding energy of C to the Ni(111) surface of the crystal was 703 kJ/mol. The supported catalysts consist of nickel supported on hydrotalcite-like compounds with three different Mg2+/Al3+ ratios. The experimental results show that for the supported Ni catalysts TPD of CO leads to desorption of both CO and CO2, with the latter being dominant. Dissociation of CO takes place, and considerable amounts of residue C are left on the surface. The residue C is removed by temperature-programmed oxidation (TPO). The results show that a low Mg2+/Al3+ ratio in the hydrotalcite precursor seems to result in more steplike sites, kinks, and defects for carbon monoxide dissociation. A detailed kinetic modeling of the TPO results based on elementary reaction steps has been conducted to give an energetic map of supported Ni catalysts. Experimental results from the ideal Ni surface fit nicely with literature values, providing useful information for identifying active sites on supported Ni catalysts.

摘要

已对负载型和非负载型镍催化剂进行了一氧化碳程序升温脱附(TPD)实验。非负载型镍催化剂由在超高真空条件下研究过的Ni(14 13 13)单晶组成。发现在低CO表面覆盖度下,CO的脱附能量为119 kJ/mol,晶体中C与Ni(111)表面的结合能为703 kJ/mol。负载型催化剂由负载在具有三种不同Mg2+/Al3+比的类水滑石化合物上的镍组成。实验结果表明,对于负载型Ni催化剂,CO的TPD导致CO和CO2的脱附,其中后者占主导。发生了CO的解离,并且表面上留下了大量的残余C。通过程序升温氧化(TPO)去除残余C。结果表明,水滑石前体中低的Mg2+/Al3+比似乎导致更多的台阶状位点、扭结和缺陷用于一氧化碳解离。基于基本反应步骤对TPO结果进行了详细的动力学建模,以给出负载型Ni催化剂的能量图。理想Ni表面的实验结果与文献值吻合良好,为识别负载型Ni催化剂上的活性位点提供了有用信息。

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