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首页> 外文期刊>ChemCatChem >Methane Coupling Reaction in an Oxy-Steam Stream through an OH Radical Pathway by using Supported Alkali Metal Catalysts
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Methane Coupling Reaction in an Oxy-Steam Stream through an OH Radical Pathway by using Supported Alkali Metal Catalysts

机译:通过使用负载的碱金属催化剂,通过OH自由基途径在氧蒸汽流中的甲烷偶联反应

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摘要

A universal reaction mechanism involved in the oxidative coupling of methane (OCM) is demonstrated under oxy-steam conditions using alkali-metal-based catalysts. Rigorous kinetic measurements indicated a reaction mechanism that is consistent with OH radical formation from a H2O-O-2 reaction followed by CH activation in CH4 with an OH radical. Thus, the presence of water enhances both the CH4 conversion rate and the C-2 selectivity. This OH radical pathway that is selective for the OCM was observed for the catalyst without Mn, which suggests clearly that Mn is not the essential component in a selective OCM catalyst. The experiments with different catalyst compositions revealed that the OH.-mediated pathway proceeded in the presence of catalysts with different alkali metals (Na, K) and different oxo anions (W, Mo). This difference in catalytic activity for OH radical generation accounts for the different OCM selectivities. As a result, a high C-2 yield is achievable by using Na2WO4/SiO2, which catalyzes the OH.-mediated pathway selectively.
机译:使用基于碱金属基催化剂在氧蒸汽条件下对甲烷(OCM)的氧化偶联中涉及的通用反应机制。严谨的动力学测量表明了一种反应机理,其与来自H 2 O-O-2反应的OH自由基形成一致,然后用OH基团在CH 4中进行CH 6激活。因此,水的存在增强了CH4转化率和C-2选择性。对于没有Mn的催化剂,观察到对OCM选择性的OH基团通路,这表明MN不是选择性OCM催化剂中的必需组分。具有不同催化剂组合物的实验表明OH。介导的途径在具有不同碱金属(Na,K)和不同氧代阴离子(W,Mo)的催化剂存在下进行。 OH激进生成催化活性的这种差异占不同的OCM选择性。结果,通过使用Na 2 / SiO 2可以实现高C-2产率,其催化OH介导的途径。

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