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Pt-Zn/UZSM-5上辛烷的高选择性芳构化:Pt-Zn相互作用和Pt位置的影响

Highly Selective Aromatization of Octane over Pt-Zn/UZSM-5: The Effect of Pt-Zn Interaction and Pt Position.

作者信息

He Peng, Chen Yunlei, Jarvis Jack, Meng Shijun, Liu Lijia, Wen Xiao-Dong, Song Hua

机构信息

Department of Chemical and Petroleum Engineering, University of Calgary, 2500 University Dr NW, Calgary, Alberta T2N 1N4, Canada.

State Key Laboratory of Coal Conversion, Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan, Shanxi 030001, China.

出版信息

ACS Appl Mater Interfaces. 2020 Jun 24;12(25):28273-28287. doi: 10.1021/acsami.0c07039. Epub 2020 Jun 12.

Abstract

The effects of Zn-Pt interaction and Pt dispersion over a uniform compact cylindrical shape ZSM-5 (UZSM-5) on the catalytic octane aromatization performance are investigated. The comparison between different Pt- and Zn-modified ZSM-5 catalysts demonstrates the significance of ZSM-5 morphology and, more importantly, the metal distributions on it. For the UZSM-5 support, Pt atoms prefer to occupy the sites within its inner pores, resulting in high selectivity to xylenes during the octane aromatization. The Zn deposit in inner pores and higher dispersion of Pt lead to the spillover of Pt sites to the external surface, which is critical for the activation of octane to produce reaction intermediates that are further converted to aromatics over the inner pore catalytic sites. These effects are evidenced by a diffuse reflection infrared Fourier transform spectroscopy study of CO adsorbed on the catalyst surface. In situ X-ray absorption fine structure spectra are collected to probe the coordination number and the chemical environment of Pt and Zn atoms in the catalysts during the octane aromatization reaction. Pt and Zn are well dispersed and stable during the reaction, and a partial reduction of Pt during the reaction is observed. A theoretical study using the density functional theory method predicts that the reaction and transition-state intermediates upon octane activation are better stabilized by Pt(111) of Pt external surface sites with a smaller activation barrier, indicating their significance in C-H activation. This hypothesis is further evidenced by comparing the octane aromatization performance of various modified catalysts through varying Zn loading, blocking inner pores, and covering the external catalytic sites with SiO.

摘要

研究了均匀致密圆柱形ZSM-5(UZSM-5)上锌-铂相互作用和铂分散度对催化辛烷芳构化性能的影响。不同铂和锌改性ZSM-5催化剂之间的比较表明了ZSM-5形态的重要性,更重要的是,金属在其上的分布。对于UZSM-5载体,铂原子倾向于占据其内部孔道内的位点,从而在辛烷芳构化过程中对二甲苯具有高选择性。内部孔道中的锌沉积和铂的更高分散度导致铂位点溢流到外表面,这对于辛烷活化以产生反应中间体至关重要,这些中间体在内部孔道催化位点上进一步转化为芳烃。通过对吸附在催化剂表面的一氧化碳进行漫反射红外傅里叶变换光谱研究证明了这些影响。收集原位X射线吸收精细结构光谱以探测辛烷芳构化反应过程中催化剂中铂和锌原子的配位数和化学环境。反应过程中铂和锌分散良好且稳定,并且观察到反应过程中铂的部分还原。使用密度泛函理论方法进行的理论研究预测,辛烷活化时的反应和过渡态中间体通过具有较小活化能垒的铂外表面位点的Pt(111)能更好地稳定,表明它们在C-H活化中的重要性。通过改变锌负载量、堵塞内部孔道以及用SiO覆盖外部催化位点来比较各种改性催化剂的辛烷芳构化性能,进一步证明了这一假设。

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