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Nature of Catalytic Active Sites in Supported MOx/ZSM-5 Catalysts: Anchoring Sites, Electronic Structures, Molecular Structures and Reactivity.

机译:负载型MOx / ZSM-5催化剂中催化活性位的性质:固定位,电子结构,分子结构和反应性。

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摘要

The non-oxidative dehydroaromatization (DHA) of methane to aromatics by ZMS-5 supported group V-VII transition metal oxide (VOx, CrOx, MoOx, WOx and ReOx) catalysts has received much attention in recent years. Despite the intensive catalysis studies, many fundamental issues still remain unclear such as the anchoring sites and molecular structures of the initial supported MOx phases on the ZSM-5 support (Si/Al= 15, 25, 40 and 140), and the nature of the M catalytic active sites during the CH4 DHA reaction. A systematic in situ molecular spectroscopic study under fully dehydrated conditions and operando spectroscopic study during methane DHA were investigated over a series of supported MOx/ZSM-5 catalysts in order to resolve the molecular level details.;The in situ Raman spectra identified that the initially supported MOx phases are completely dispersed as surface monoxo (M=O) and dioxo (O=M=O) MOx species on the ZSM-5 supports. The corresponding in situ UV-vis spectra of supported MOx/ZSM-5 catalysts have high edge energy (Eg) values for the Ligand-to-Metal-Charge Transfer (LMCT) transitions and the absence of d-d transitions are consistent with that the supported MOx species are isolated and fully oxidized (V+5, Cr +6, Mo+6, W+6 and Re+7) on the ZSM-5 support, respectively.;The reactivity of the supported MOx/ZSM-5 catalysts was studied with temperature-programmed operando Raman-MS spectroscopy. The supported VOx/ZSM-5 and CrOx/ZSM-5 catalysts were not selective to benzene and formed only carbon monoxide and hydrogen. Only supported ReOx/ZSM-5, MoOx/ZSM-5 and WOx/ZSM-5 were found to be active catalysts for methane DHA and the temperature for initial benzene formation decreased in the order of WOx/ZSM-5 (~800 °C) < MoOx/ZSM-5 (~700 °C)
机译:近年来,由ZMS-5负载的V-VII族过渡金属氧化物(VOx,CrOx,MoOx,WOx和ReOx)催化剂将甲烷进行非氧化脱氢芳构化(DHA)成为芳烃受到了广泛关注。尽管进行了深入的催化研究,但许多基本问题仍然不清楚,例如ZSM-5载体(Si / Al = 15、25、40和140)上最初负载的MOx相的固定位点和分子结构,以及CH4 DHA反应过程中的M个催化活性位。为了解决分子水平的细节问题,在一系列负载的MOx / ZSM-5催化剂上研究了完全脱水条件下的系统原位分子光谱研究和甲烷DHA期间的操作光谱研究。原位拉曼光谱确定了初始在ZSM-5载体上,负载的MOx相完全作为表面一元(M = O)和二氧(O = M = O)MOx物质分散。负载的MOx / ZSM-5催化剂的相应原位UV-vis光谱在配体-金属电荷转移(LMCT)跃迁中具有较高的边缘能(Eg)值,并且不存在dd跃迁与所负载的分别在ZSM-5载体上分离和完全氧化了MOx物种(V + 5,Cr + 6,Mo + 6,W + 6和Re + 7);负载型MOx / ZSM-5催化剂的反应活性为使用程序升温拉曼光谱仪进行了研究。负载的VOx / ZSM-5和CrOx / ZSM-5催化剂对苯没有选择性,仅形成一氧化碳和氢。发现只有受支持的ReOx / ZSM-5,MoOx / ZSM-5和WOx / ZSM-5是甲烷DHA的活性催化剂,初始苯生成温度以WOx / ZSM-5的顺序降低(约800°C)。 )

著录项

  • 作者

    Tang, Yadan.;

  • 作者单位

    Lehigh University.;

  • 授予单位 Lehigh University.;
  • 学科 Chemical engineering.;Analytical chemistry.;Energy.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 237 p.
  • 总页数 237
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:55

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