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Raman and X-ray absorption studies of Mo species in Mo/H-ZSM5 catalysts for non-oxidative CH4 reactions

机译:Mo / H-ZSM5催化剂中Mo物种对非氧化CH4反应的拉曼光谱和X射线吸收研究

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The structure of MoOx and MoCy species in Mo/H-ZSM5 after exchange and during CH4 reactions was probed by in situ Raman and X-ray absorption spectroscopy. Raman spectra of physical mixtures of H-ZSM5 and MoO3 powders initially showed strong Raman bands characteristic of bulk MoO3. The intensity of Raman bands for Mo-O-Mo decreased relative to those for Mo=O bonds during treatment in air at 773 K, suggesting that MoO3 spreads as (MoO3), oligomers on external zeolite surfaces. The Raman bands for MoO3 crystallites became much weaker after treatment in air at 973 K; this occurred concurrently with H2O evolution, indicating that dispersed MoOx species exchanged with acidic OH groups in the zeolite. Weak bands appeared at 970 and 1045 cm(-1) they were assigned to stretching modes in exchanged MoOx species, The X-ray near-edge spectrum of MoO3/H-ZSM5 mixtures gradually evolves to one characteristic of tetrahedral Mo6+ centers in bulk MgMo2O7 as H2O forms during treatment at 773-973 K, confirming that exchange occurs in this temperature range. Each Mo6+ replaces one H+ at all Mo contents (Mo/Al= 0.11-0.37). The radial structure function derived from the absorption fine structure also evolves from that for bulk MoO3, to that expected of dispersed MoO3 without long-range periodicity, to one described using multiple scattering simulations as a (Mo2O7)(2-) dimer resembling MgMo2O7 with two of the (C) atoms located in the zeolite framework. This structure is consistent with the exchange stoichiometry from H2O desorption and with the removal of 2.5 O/Mo during reduction-carburization. The required number of Al pairs in the samples to accommodate the dimer structures is within the range predicted by Monte Carlo calculation of Al statistical distribution. The absorption edge and near-edge features in exchanged MoOx/-ZSM5 evolve during CH4 reactions at 973 K to resemble bulk Mo2C without long-range periodicity, with the concurrent evolution of CO, CO2, and H2O and an increase in the rate of hydrocarbon formation. Multiple scattering analysis of a MoCx cluster bonded to an O atom leads to a radial structure function in excellent agreement with experiment. (C) 2000 Academic Press. [References: 43]
机译:交换后和CH4反应期间,Mo / H-ZSM5中的MoOx和MoCy物种的结构通过原位拉曼光谱和X射线吸收光谱法进行探测。 H-ZSM5和MoO3粉末的物理混合物的拉曼光谱最初显示了块状MoO3的强拉曼谱带。在773 K的空气中处理期间,Mo-O-Mo的拉曼能带强度相对于Mo = O键的拉曼能带强度降低,表明MoO3以(MoO3)低聚物的形式在外部沸石表面扩散。在973 K的空气中处理后,MoO3晶体的拉曼谱带变得更弱。这与H2O放出同时发生,表明分散的MoOx物种与沸石中的酸性OH基交换。弱带出现在970和1045 cm(-1)处,它们在交换的MoOx物种中被指定为拉伸模式。MoO3/ H-ZSM5混合物的X射线近边缘光谱逐渐演变为块状MgMo2O7的四面体Mo6 +中心的一个特征因为在773-973 K的处理过程中会形成H2O,这表明在此温度范围内发生了交换。每种Mo6 +都会在所有Mo含量(Mo / Al = 0.11-0.37)处替代一个H +。源自吸收精细结构的径向结构函数也从块状MoO3的径向结构函数演变为预期的,没有长周期周期性的分散MoO3的径向结构函数,逐渐演变为使用多次散射模拟(类似于MgMo2O7的(Mo2O7)(2-)二聚体)描述的函数。位于沸石骨架中的两个(C)原子。这种结构与H2O解吸的交换化学计量以及还原碳化过程中去除的2.5 O / Mo一致。样品中容纳二聚体结构所需的Al对数量在通过Monte Carlo计算的Al统计分布预测的范围内。交换的MoOx / -ZSM5的吸收边缘和近边缘特征在973 K的CH4反应过程中发生演变,类似于块状Mo2C,没有长周期周期性,同时发生CO,CO2和H2O演变,并且烃速率增加编队。与O原子键合的MoCx团簇的多次散射分析导致径向结构功能与实验非常吻合。 (C)2000学术出版社。 [参考:43]

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