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Data science assisted investigation of catalytically active copper hydrate in zeolites for direct oxidation of methane to methanol using H2O2

机译:数据科学辅助使用H2O2将沸石直接氧化甲烷与甲醇的催化活性铜水合物研究

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摘要

Abstract Dozens of Cu zeolites with MOR, FAU, BEA, FER, CHA and MFI frameworks are tested for direct oxidation of CH4 to CH3OH using H2O2 as oxidant. To investigate the active structures of the Cu zeolites, 15 structural variables, which describe the features of the zeolite framework and reflect the composition, the surface area and the local structure of the Cu zeolite active site, are collected from the Database of Zeolite Structures of the International Zeolite Association (IZA). Also analytical studies based on inductively coupled plasma-optical emission spectrometry (ICP-OES), X-ray fluorescence (XRF), N2 adsorption specific surface area measurement and X-ray absorption fine structure (XAFS) spectral measurement are performed. The relationships between catalytic activity and the structural variables are subsequently revealed by data science techniques, specifically, classification using unsupervised and supervised machine learning and data visualization using pairwise correlation. Based on the unveiled relationships and a detailed analysis of the XAFS spectra, the local structures of the Cu zeolites with high activity are proposed.
机译:用Mor,FAU,BEA,FER,CHA和MFI框架进行抽象的数十种Cu沸石,用于使用H 2 O 2作为氧化剂直接氧化CH 4至CH 3 OH。为了研究Cu沸石的活性结构,从沸石结构的数据库中收集了沸石框架的特征,描述了沸石骨架的特征,其描述了沸石骨架的特征,并反映了Cu沸石活性位点的组合物,表面积和局部结构,从沸石结构的数据库中收集国际沸石协会(IZA)。还基于电感耦合等离子体 - 光发射光谱法(ICP-OES),X射线荧光(XRF),N2吸附特异表面积测量和X射线吸收细结构(XAFS)光谱测量的分析研究。随后通过数据科学技术,具体地,使用成对相关性的数据可视化进行分类,分类,分类。使用成对相关性,分类,催化活性与结构变量之间的关系。基于揭示的关系和对XAFS光谱的详细分析,提出了具有高活性的Cu沸石的局部结构。

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