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Reduction of exhaust emission from a stoichiometric engine using non-thermal plasma generated by a corona discharge device

机译:使用由电晕放电装置产生的非热等离子体从化学计量发动机减少废气排放

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A corona discharge device (CDD) used in conjunction with automotive stoichiometric catalysts has been shown to be effective in reducing exhaust tailpipe emissions and catalytic converter light-off temperatures. The CDD used here is a low power, low cost corona discharge device mounted ahead of the catalytic converter in the exhaust stream. Creation of radicals and other oxidizing species in the exhaust by the non-thermal plasma is shown to significantly improve catalyst conversion efficiencies for HC, CO and NO_x. Burner flow data shows improvement in steady-state conversion efficiencies as well as improved catalyst light-off performance. Engine-dynamometer and vehicle data on spark-ignition engines using production type (stoichiometric) control also shows improved performance with aged catalysts, and various levels of fuel sulfur. The reversibility of sulfur poisoning was also observed. With the CDD, catalysts are shown to recover performance more fully and at lower temperatures after fuel sulfur levels are decreased.
机译:与汽车化学计量催化剂结合使用的电晕放电装置(CDD)已经证明是有效地减少排气尾管排放和催化转化器光脱离温度。这里使用的CDD是低功率,低成本电晕放电装置,其在排气流中的催化转化器前面安装。通过非热血浆的废气中的自由基和其他氧化物种的产生显着提高HC,CO和NO_X的催化剂转化效率显着提高。燃烧器流量数据显示稳态转换效率的改善以及改善的催化剂脱液性能。使用生产类型(化学计量)控制的火花点火发动机上的发动机测力计和车辆数据还显示出具有老化催化剂的改善性能,以及各种燃料硫的性能。还观察到硫中毒的可逆性。随着CDD,催化剂显示在燃料硫水平降低后更完全且在较低温度下回收性能。

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