首页> 外文期刊>Russian Journal of Physical Chemistry >Deactivation of a mixed oxide catalyst of Mo-V-Te-Nb-O composition in the reaction of oxidative ethane dehydrogenation
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Deactivation of a mixed oxide catalyst of Mo-V-Te-Nb-O composition in the reaction of oxidative ethane dehydrogenation

机译:Mo-V-Te-Nb-O组成的混合氧化物催化剂在氧化乙烷脱氢反应中的失活

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摘要

The operational stability of a mixed oxide catalyst of Mo-V-Te-Nb-O composition in the oxidative dehydrogenation of ethane (ratio of C2H6: O-2 = 3: 1) is studied in a flow reactor at temperatures of 340-400A degrees C, a pressure of 1 atm, and a WHSV of the feed mixture of 800 h(-1). It is found that the selectivity toward ethylene is 98% at 340A degrees C, but the conversion of ethane at this temperature is only 6%; when the temperature is raised to 400A degrees C, the conversion of ethane is increased to 37%, while the selectivity toward ethylene is reduced to 85%. Using physical and chemical means (XPS, SEM), it is found that the lack of oxidant in the reaction mixture leads to irreversible changes in the catalyst, i.e., reduced selectivity and activity. Raising the reaction temperature to 400A degrees C allows the reduction of tellurium by ethane, from the +6 oxidation state to the zerovalent state, with its subsequent sublimation and the destruction of the catalytically active and selective phase; in its characteristics, the catalyst becomes similar to the Mo-V-Nb-O system containing no tellurium.
机译:研究了Mo-V-Te-Nb-O组成的混合氧化物催化剂在乙烷氧化脱氢(C2H6:O-2 = 3:1的比例)中在340-400A温度下的运行稳定性摄氏度,1个大气压的压力和800 h(-1)的进料混合物的WHSV。发现在340A℃下对乙烯的选择性为98%,但是在该温度下乙烷的转化率仅为6%;在室温下,乙烷的转化率仅为6%。当温度升高到400℃时,乙烷的转化率增加到37%,而对乙烯的选择性降低到85%。使用物理和化学手段(XPS,SEM),发现反应混合物中氧化剂的缺乏导致催化剂的不可逆变化,即降低的选择性和活性。将反应温度提高到400A摄氏度,可使乙烷将碲从+6氧化态还原为零价态,随后将其升华并破坏催化活性和选择相。就其特性而言,该催化剂变得类似于不含碲的Mo-V-Nb-O系统。

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