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Chemical kinetic modelling of the effect of NO on the oxidation of CH4 under fluidized bed combustor conditions
Authors:G Loeffler  VJ WargadalamF Winter  H Hofbauer
Affiliation:Fuel Technology and Environmental Technology, Institute of Chemical Engineering, Vienna University of Technology, Getreidemarkt 9/159, A-1060 Vienna, Austria
Abstract:The ignition and burnout of the volatiles in fluidized bed combustor are essential for its performance and emissions. NOx are known to sensitize the oxidation of hydrocarbons, CO, and H2. This effect is relevant especially for fluidized bed combustors, which are operated at relatively low temperatures (i.e. about 850 °C). Different reaction mechanisms and modifications to existing mechanisms have been proposed in the literature to account for these low temperature interactions of NOx and hydrocarbons. In this work, an existing widely used reaction mechanism is adapted and tested for its capability to describe the NO sensitized oxidation of CH4 under conditions relevant to fluidized bed combustion. NO lowers the ignition temperature to about 300 °C under the conditions investigated. Three different oxidation paths for the oxidation of CH4 have been identified and discussed. Their relative importance strongly depends on combustion temperature, indicating that the presence of NOx significantly affects the oxidation of the volatiles in fluidized bed combustion.
Keywords:Fluidized bed combustion  CH4  NO  Sensitized oxidation
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