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AN INVESTIGATION ON THE ROLE OF NO2 IN THE OXIDATION OF METHANE TO FORMALDEHYDE

机译:NO2在甲烷氧化成甲醛中的作用的研究

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Experimental results and a kinetic modeling were previously reported for the gas phase oxidation of methane in the presence of NO2 at short residence time (20-80 ms) in a microreactor. A detailed kinetic analysis is carried out in the present study in means of flow rate and sensitivity analysis, in order to investigate the role of NO2. A comparison is made of the reaction systems with and without NO2. The concentration profiles of several key species are presented and analyzed in the present study. The CH3O center dot radicals are present in far larger quantities in the CH4/O-2/NO2 system than in the CH4/O-2 system. With NO2, the dominant route to HCHO is through CH3O center dot, primarily involving the reaction: CH3 center dot + NO2 double left right arrow CH3O center dot + NO, followed by: CH3O center dot (+M) double left right arrow CH2O + H center dot (+M) and CH3O center dot + O-2 double left right arrow HO2 center dot + CH2O. The promoting effects of NO2 can be explained by the interconversion NO2/NO, which is mainly related to: HO2 center dot + NO double left right arrow NO2 + OH center dot, NO2 + H center dot double left right arrow NO + OH center dot, NO + CH3O2 center dot double left right arrow CH3O center dot + NO2 and NO2 + CH3 center dot double left right arrow CH3O center dot + NO.
机译:先前已经报道了在微型反应器中在短停留时间(20-80毫秒)内在NO2存在下甲烷气相氧化的实验结果和动力学模型。为了研究NO 2的作用,在本研究中对流速和灵敏度进行了详细的动力学分析。比较有和没有NO 2的反应系统。提出并分析了几种关键物种的浓度分布。与CH4 / O-2系统相比,CH4 / O-2 / NO2系统中CH3O中心点自由基的数量要大得多。对于NO2,通向HCHO的主要途径是通过CH3O中心点,主要涉及以下反应:CH3中心点+ NO2左上右箭头CH3O中心点+ NO,然后是:CH3O中心点(+ M)左上右箭头CH2O + H中心点(+ M)和CH3O中心点+ O-2左向右箭头HO2中心点+ CH2O。 NO2的促进作用可以通过互变NO2 / NO来解释,其相互转换主要涉及:HO2中心点+ NO左右双箭头NO2 + OH中心点,NO2 + H中心点双左右右箭头NO + OH中心点,NO + CH3O2中心点向左向右箭头CH3O中心点+ NO2和NO2 + CH3中心点向左向右向箭头CH3O中心点+ NO。

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