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首页> 外文期刊>Journal of Catalysis >EVOLUTION OF A VPO CATALYST IN N-BUTANE OXIDATION REACTION DURING THE ACTIVATION TIME
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EVOLUTION OF A VPO CATALYST IN N-BUTANE OXIDATION REACTION DURING THE ACTIVATION TIME

机译:在活化时间期间N-丁烷氧化反应中VPO催化剂的演变

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Starting from VO(HPO4), 0.5 H2O a VPO catalyst has been activated at 400 degrees C in an n-butane/air mixture. The catalyst has been characterized at different activation times (up to 132 h) by XRD, P-31 NMR (spin-echo mapping and magic angle spinning) and XPS. A quantitative estimation of the amount of V5+ has been performed in the bulk (by NMR) and on the surface (by XPS) of the catalyst. During activation, the VPO catalyst undergoes a progressive reduction (into (VO)(2)P2O7) of the delta-VOPO4 phase, which is also transformed in part into alpha(Pi)-VOPO4. These changes have been correlated with the evolution of the catalytic performances. The n-butane conversion and the selectivity for maleic anhydride increase with the V4+/V5+ surface ratio. The results have been discussed in relation to the relevant published studies. It is concluded that the dynamic surface concentration of V5+ species, which are acting as oxidizing centers, is reduced during activation to a level low enough to achieve an efficient VPO catalyst. (C) 1995 Academic Press, Inc. [References: 37]
机译:从VO(HPO 4)开始,0.5H2O A VPO催化剂已在400℃下在正丁烷/空气混合物中被激活。催化剂的特征在于通过XRD,P-31 NMR(旋转回波映射和魔法角纺)和XPS的不同活化时间(最多132小时)。在催化剂的体积(通过NMR)和表面(通过XPS)中进行了V5 +量的定量估计。在激活期间,VPO催化剂经历Δ-vopo4相的逐渐减少(进入(vo)(2)p2O7),其也分为α(pi)-vopo4转化。这些变化与催化性能的演变相关。 N-丁烷转化与马来酸酐的选择性随V4 + / V5 +表面比而增加。结果已讨论与相关公布的研究有关。结论是,在活化至足够低以实现有效的VPO催化剂的水平期间,V5 +物种的动态表面浓度降低。 (c)1995年学术出版社,Inc。[参考文献:37]

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