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Improved catalyic performances of MoO3 in the O2 assisted dehydration of 2-butanol thank α=Sb2O4 and spillover oxygen

机译:由于α= Sb2O4和溢出氧的存在,MoO3在O2辅助的2-丁醇脱水中的催化性能得到改善

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摘要

We clarify mechanism of the cooperation betweenMoO3 andα=Sb2O4in the O2 –assisted dehydration of 2-butanol(220℃). When used alone, MoO3 loses activity by over-reducing to MoO2 . On the contrary, MoO3 exhibits improvedconversion of 2-butanol and yield to butene when it is used inphysical mixture with α=Sb2O4. The origin of the synergy is 2-fold:thanks to α=Sb2O4,⑴the reduction of MoO3 to lessactive MoO2 is inhibited and ⑵ the surface of f MoO3 isdynamically stabilized to a more active and selective suboxidicstate. These effects are interpreted as due to a remote controlmechanism thanks to spillover oxygen formed on α=Sb2O4.
机译:阐明了MoO3和α= Sb2O4在O2辅助的2-丁醇(220℃)脱水中协同作用的机理。单独使用时,MoO3会因过度还原成MoO2而失去活性。相反,当MoO3与α= Sb2O4物理混合物使用时,表现出改善的2-丁醇转化率和产率,成为丁烯。协同作用的起源是2倍:由于α= Sb2O4,⑴抑制了MoO3向活性较低的MoO2的还原,并且ff MoO3的表面被动态稳定化为更具活性和选择性的亚氧化态。这些影响被解释为归因于远程控制机制,这归因于在α= Sb2O4上形成的溢出氧气。

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