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通过XANES光谱的线性组合拟合分析对Zn/ZSM-5催化剂中锌物种结构和分布的精细分析

A Fine Analysis of Zn Species Structure and Distribution in Zn/ZSM-5 Catalysts by Linear Combination Fitting Analysis of XANES Spectra.

作者信息

Li Baichao, Gao Jie, Shao Jiabei, Geng Rui, Qin Zhangfeng, Wang Jianguo, Fan Weibin, Dong Mei

机构信息

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

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Molecules. 2024 Jan 29;29(3):631. doi: 10.3390/molecules29030631.

Abstract

Investigating the distribution of different Zn species on Zn-containing zeolite catalysts is crucial for identifying the active sites and establishing the relationship between the catalyst's structure and its activity in the process of ethylene aromatization. By utilizing X-ray absorption near edge spectra (XANES) of various reference samples, this study employed linear combination fitting (LCF) analysis on XANES spectra of real samples to accurately measure the changes in the distribution of Zn species in Zn-containing HZSM-5 zeolites under different Zn sources and loadings. The results showed that ZnOH, ZnO clusters, and ZnO crystalline structures coexist in Zn/HZSM-5 catalysts prepared through physical mixing and incipient wet impregnation methods. A similar trend was observed for catalysts prepared using different methods, with an increase in Zn content resulting in a decrease in the proportion of ZnOH and a significant increase in the amount of larger ZnO crystals. Furthermore, ZnO clusters were confined within the zeolite pores. The findings of this study established a direct correlation between the amount of ZnOH determined through LCF analysis and both the rate of hydrogen production and the rate of aromatics formation, providing strong evidence for the catalytic role of ZnOH as an active center for dehydrogenation, which plays a key role in promoting the formation of aromatics. The method of LCF analysis on XANES spectra allows for the determination of the local structure of Zn species, facilitating a more precise analysis based on the distribution of these species. This method not only provides detailed information about the Zn species but also enhances the accuracy of the overall analysis.

摘要

研究不同锌物种在含锌沸石催化剂上的分布对于确定活性位点以及建立乙烯芳构化过程中催化剂结构与其活性之间的关系至关重要。通过利用各种参考样品的X射线吸收近边光谱(XANES),本研究对实际样品的XANES光谱进行线性组合拟合(LCF)分析,以准确测量不同锌源和负载量下含锌HZSM-5沸石中锌物种分布的变化。结果表明,通过物理混合和初湿浸渍法制备的Zn/HZSM-5催化剂中,ZnOH、ZnO簇和ZnO晶体结构共存。不同方法制备的催化剂呈现出类似趋势,锌含量增加导致ZnOH比例降低,较大尺寸ZnO晶体的量显著增加。此外,ZnO簇被限制在沸石孔内。本研究结果通过LCF分析确定的ZnOH量与产氢速率和芳烃形成速率之间建立了直接关联,为ZnOH作为脱氢活性中心的催化作用提供了有力证据,这在促进芳烃形成中起关键作用。对XANES光谱进行LCF分析的方法能够确定锌物种的局部结构,便于基于这些物种的分布进行更精确的分析。该方法不仅提供了关于锌物种的详细信息,还提高了整体分析的准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/335e/10856302/89cb41bc38db/molecules-29-00631-g001.jpg

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