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首页> 外文期刊>Journal of Materials Science >Oscillatory combustion of propene during in situ mechanical activation of solid catalysts
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Oscillatory combustion of propene during in situ mechanical activation of solid catalysts

机译:固体催化剂原位机械活化期间丙烯的振动燃烧

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Mechanochemical activation of solids can lead to a strong increase in their activity as catalysts in heterogeneously catalyzed reactions. In the following, we report on the effects of solid catalyst activation during ball milling that lead to oscillatory behavior in CO and CO2 formation during propene oxidation. The oscillations arise under in situ ball milling conditions over chromium(III) oxide (Cr2O3) and cerium(IV) oxide (CeO2), respectively. The experiments were conducted under continuous gas flow at ambient pressure and temperature, using both a modified steel and a tungsten carbide milling vessel. Abrasion of particles from the steel milling vessel could be eliminated as the sole cause for the oscillations through substitution by a tungsten carbide milling vessel. The intensity and frequency of oscillations are shown to be dependent on the propene-to-oxygen ratio, the milling frequency, milling ball size and metal oxide used. Overall, Cr2O3 shows higher activity for oscillatory propene combustion under in situ mechanical activation than CeO2.
机译:固体的机械化学活化可以导致其活性的强烈增加在非均相催化反应的催化剂。在下文中,我们球磨期间固体催化剂活化的效果报告,丙烯氧化期间导致CO振荡行为和CO 2的形成。分别下原位球磨条件产生的振荡超过铬(III)氧化物(的Cr2O3)和铈(IV)氧化物(CeO 2)中,。该实验下,在环境压力和温度连续气流中进行,同时使用改性钢和碳化钨研磨容器。从钢研磨容器颗粒的磨损可以消除作为通过替代由碳化钨研磨容器的振动的唯一原因。强度和振荡的频率被示出为依赖于丙烯与氧的比值,铣削频率,铣削球尺寸和金属氧化物使用。总体而言,的Cr2O3显示下比氧化铈原位机械活化的振荡丙烯燃烧更高的活性。

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