• Title of article

    NOx formation and reduction mechanisms in staged O2/CO2 combustion

  • Author/Authors

    Watanabe، نويسنده , , Hirotatsu and Yamamoto، نويسنده , , Jun-ichiro and Okazaki، نويسنده , , Ken، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    9
  • From page
    1255
  • To page
    1263
  • Abstract
    The purpose of this study was to investigate the NOx formation and reduction mechanisms in staged O2/CO2 combustion and in air combustion. A flat CH4 flame doped with NH3 for fuel-N was formed over the honeycomb, and NOx formation characteristics were investigated. In addition, chemiluminescence of OH* distribution was measured, and CHEMKIN-PRO was used to investigate the detailed NOx reduction mechanism. In general, the NOx conversion ratio decreases with decreasing primary O2/CH4 ratio, whereas NH3 and HCN, which are easily converted to NOx in the presence of O2, increases rapidly. Therefore, a suitable primary O2/CH4 ratio exists in the staged combustion. Our experiments showed the primary O2/CH4 ratio, which gave the minimum fixed nitrogen compounds in O2/CO2 combustion, was lower than in air combustion. The NOx conversion ratio in O2/CO2 combustion was lower than in air combustion by 40% in suitable staged combustion. This could be explained by high CO2 concentrations in the O2/CO2 combustion. It was shown that abundant OH radicals were formed in O2/CO2 combustion through the CO2 + H → CO + OH, experimentally and numerically. OH radicals produced H and O radicals through H2 + OH → H + H2O and O2 + H → OH + O, because a mass of hydrogen source exists in the CH4 flame. O and OH radicals formed in the fuel-rich region enhanced the oxidation of NH3 and HCN. NOx formed by the oxidation of NH3 and HCN was converted to N2 because the oxidation occurred in the fuel-rich region where the NOx reduction effect was high. In fact, the oxidation of NH3 and HCN in the fuel-rich region was preferable to remaining NH3 and HCN before secondary O2 injection in the staged combustion. A significant reduction in NOx emission could be achieved by staged combustion in O2/CO2 combustion.
  • Keywords
    O2/CO2 combustion , Staged combustion , Low NOx emission
  • Journal title
    Combustion and Flame
  • Serial Year
    2011
  • Journal title
    Combustion and Flame
  • Record number

    2275680