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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Application of VO_x/A12o3 and Fe2(MoO4)3-MoO3 catalysts for the selective reaction and detection of ethanol in multi-component hydrocarbon fuel mixtures
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Application of VO_x/A12o3 and Fe2(MoO4)3-MoO3 catalysts for the selective reaction and detection of ethanol in multi-component hydrocarbon fuel mixtures

机译:VO_x / Al2O3和Fe2(MoO4)3-MoO3催化剂在多组分烃类燃料混合物中乙醇的选择性反应和检测中的应用

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This work presents for the first time the development of a selective catalyst to enable selective hydrocarbon detection when coupled with a microcalorimetric sensor. Specifically, the application of VO_x/Al2O3 and Fe2(MoO4)_3-MoO3 catalysts as selective sensor substrates for thermal microsensor detection of ethanol in automotive fuel is described. At 453 K, 8VO_x/Al2O3 (monolayer surface density of ~8Vm~2) and Fe2(MoO4)_3-MoO3 (Mo:Fe = 1.9) catalysts convert ethanol towards one highly exothermic oxidative dehydrogenation product, acetaldehyde, with selectivities of 95% and 98%, respectively. For 8VO_x/Al2O3 and Fe2(MoO4)_3-MoO3, rates at 453 K are 1.3 x 10~6 and 3.4 x 10~6 mol ethanol converted/gs, respectively, and they are independent of ethanol concentration from 0.2 to 2.0 kPa ethanol. At 453 K, these catalysts provide excellent reaction selectivity towards all classes of hydrocarbons present in automotive fuels. No reaction is observed for common constituents of gasoline such as benzene, toluene, 1-pentene, 1 -hexene, 2-methy! butane, butyraldehyde, and 2-methyl pentane at 453 K in binary or ternary mixtures with ethanol. All of these non-target hydrocarbons except butyraldehyde also have no impact on the ethanol partial oxidation rate or selectivity. MTBE proves to be active at 453 K over both 8VO_x/A12O3 and Fe2(MoO4)_3-MoO3. Both MTBE and butyraldehyde decrease the ethanol reaction rate due to competitive surface adsorption on active sites but have no impact on the selectivity of the ethanol partial oxidation reaction.
机译:这项工作首次提出了选择性催化剂的开发,以便在与微量热传感器耦合时能够进行选择性烃检测。具体来说,描述了VO_x / Al2O3和Fe2(MoO4)_3-MoO3催化剂作为选择性传感器基质在汽车燃料中乙醇的热微传感器检测中的应用。在453 K下,8VO_x / Al2O3(单层表面密度为〜8V / nm〜2)和Fe2(MoO4)_3-MoO3(Mo:Fe = 1.9)催化剂将乙醇转化为一种高度放热的氧化脱氢产物乙醛,其选择性为95%和98%。对于8VO_x / Al2O3和Fe2(MoO4)_3-MoO3,在453 K下的转化率分别为1.3 x 10〜6和3.4 x 10〜6 mol乙醇转化/ gs,并且与0.2至2.0 kPa乙醇的乙醇浓度无关。在453 K下,这些催化剂对汽车燃料中存在的所有碳氢化合物具有出色的反应选择性。对于汽油的常见成分,例如苯,甲苯,1-戊烯,1-己烯,2-甲基,未观察到任何反应!丁烷,丁醛和2-甲基戊烷在453 K下与乙醇形成二元或三元混合物。除丁醛外,所有这些非目标烃都对乙醇的部分氧化速率或选择性没有影响。事实证明,MTBE在8VO_x / Al2O3和Fe2(MoO4)_3-MoO3上均在453 K下具有活性。由于在活性位点上竞争性的表面吸附,MTBE和丁醛均降低了乙醇的反应速率,但对乙醇部分氧化反应的选择性没有影响。

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