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In Situ Structure Study of a TiO2 Doped MnOX-Na2WO4/SiO2 Catalyst Under Na2WO4 Melting Conditions

  • Evgeny I. Vovk,
  • Danyu Wang,
  • Zhehao Qiu,
  • Yang Liu,
  • Mingping He,
  • Xiaohong Zhou,
  • Cairu Guan,
  • Na Yu,
  • Yong Lu,
  • Junyu Lang,
  • Yong Yang

摘要

MnOX-Na2WO4/SiO2 catalyst exhibited notable C2 selectivity/yield in the oxidative coupling of methane (OCM), a promised green chemistry reaction. Nevertheless, the reaction mechanism of this catalyst remains a subject of contention, particularly regarding the role of Na2WO4 in the activation. In this study, in situ characterizations of a TiO2-modified MnOX-Na2WO4/SiO2 catalyst are conducted by XRD and XPS correlating to the OCM reaction condition, focusing on the simultaneous phase transition of catalyst components within its activation temperature zone. The online MS along with XPS/XRD coupled activity study confirm that transition from Mn3+ to Mn2+ stands as a pivotal factor influencing the reactivity. In situ XRD further revealed that in this narrow temperature window there is a particular three-step Na2WO4 phase change, ending as molten salt, right before the substantial Mn3+ to Mn2+ transfer initiated. In addition, the rarely observed Na2WO4 behavior as molten salt is observed by in situ XPS with rapid spectra collected during an on-stage heating process. These comprehensive in situ catalyst characterizations, covering the extensive structure–activity relationship from solid state to partial molten salt condition, supply new important evidence of the active oxygen transfer pathway from Na2WO4 to Mn species which provides a key to understand the activation mechanism of MnOX-Na2WO4/SiO2 catalyst in OCM.

Graphical Abstract