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Catalytic Combustion of Methane Soot

机译:甲烷烟灰的催化燃烧

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The performances of a Cu-V-K catalyst in the oxidation of soot collected in a methane-rich flame have been studied in a tubular flow reactor. Burn-off temperatures were lowered by about 300 K with respect to uncatalyzed combustion. The dependence of the reaction rate on the relevant variables was investigated. The apparent activation energy for the catalytic oxidation was found to be about a half of the one of the uncatalyzed process, while the carbon reactivity showed a linear dependence on the initial soot to catalyst mass ratio. A square root dependence on the oxygen partial pressure was found. The results of soot combustion confirm previous findings obtained with other carbon materials. Moreover, kinetic data follow a model proposed for the catalytic combustion of amorphous carbon black (Ciambelli et al., 1994a). An extension of this model, incorporating the influence of carbon-catalyst contact on the catalyst performances, has been presented.
机译:在管状流动反应器中研究了在富含甲烷的火焰中收集的烟灰氧化中的Cu-V-K催化剂的性能。燃烧温度相对于未催化的燃烧降低约300k。研究了反应速率对相关变量的依赖性。发现催化氧化的表观活化能量为约1个未催化的方法的一半,而碳反应性显示对催化剂质量比的初始烟灰的线性依赖性。发现了对氧分压的平方根依赖性。烟灰燃烧的结果证实了以其他碳材料获得的先前发现。此外,动力学数据遵循所提出的非晶炭黑催化燃烧的模型(Ciambelli等,1994a)。已经介绍了该模型的延伸,并介绍了碳催化剂接触对催化剂性能的影响。

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