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Effects of H2O and SO2 on Selective Catalytic Reduction of NO_x by NH3

机译:H2O和SO2对NH3选择性催化还原NO_x的影响

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Experiments have been investigated to study the effects of H2O and SO2 contents on NO_x reduction efficiency using ammonia (NH3) as the reducing agent over the nanometer-class V-W/Ti catalyst under variable temperatures on a steady-flow reactor. The results show that the activity of selective catalytic reduction (SCR) is inhibited by H2O content at low temperature, but higher NO conversion efficiency should be achieved at high temperature due to the reaction of NH3 oxidized by O2 to NO_x would be inhibited by EbO content. The selective catalytic reduction activity will be promoted by SO2 content in the range of 150-500 °C, NO conversion efficiency can be improved to 98 % from 94 % by adding SO2 content. The activity of selective catalytic reduction will be promoted at 150-240 °C and 350-500 °C when H2O and SO2 exist at the same time, but ammonium sulfates and other sulfates will be generated at low temperature. Additionally, following the ESC test, the positive influence to the NO_x conversion has been proved in the presence of H2O and SO2, but it has considerably negative effect to PM emission for the diesel engine.
机译:已经进行了实验研究,以研究在稳态流动反应器上,在可变温度下,使用纳米级V-W / Ti催化剂,使用氨(NH3)作为还原剂,水和SO2含量对NO_x还原效率的影响。结果表明,低温下H2O含量抑制了选择性催化还原(SCR)的活性,但高温下应实现更高的NO转化效率,因为EbO含量会抑制O2氧化的NH3反应为NO_x 。 150-500°C范围内的SO2含量将促进选择性催化还原活性,通过添加SO2含量,NO转化效率可以从94%提高到98%。当H2O和SO2同时存在时,选择性催化还原的活性将在150-240°C和350-500°C时得到增强,但是在低温下会生成硫酸铵和其他硫酸盐。另外,在进行ESC测试后,已证明在存在H2O和SO2的情况下,对NO_x转化率具有积极影响,但对柴油机的PM排放具有相当大的负面影响。

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