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首页> 外文期刊>International Journal of Environmental Science and Technology >Selective catalytic reduction of NOx emissions by hydrocarbons over Ag-Pt/Al2O3 catalyst in diesel engine
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Selective catalytic reduction of NOx emissions by hydrocarbons over Ag-Pt/Al2O3 catalyst in diesel engine

机译:在柴油发动机中Ag-Pt / Al2O3催化剂中烃的选择性催化还原NOx排放量

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摘要

Selective catalytic reduction is an application used to control NOx pollutants in diesel engines. Aqueous urea solution, commercially called AdBlue and obtained by mixing pure water and NH3, is the most commonly used reductant while the V2O5-WO3/TiO2 structure has a widespread use as catalyst in SCR technology. However, the SCR systems included AdBlue and V2O5-WO3/TiO2 structure have low NOx conversion efficiency at low exhaust gas temperatures. The use of hydrocarbons as reductant and catalysts containing silver improves the conversion efficiency of selective catalytic reduction systems at low exhaust temperatures. In this work, selective catalytic reduction of NOx emissions from diesel engines in the presence of hydrocarbons has been studied. While ethanol and biodiesel mixtures were used as hydrocarbons, the Ag-Pt/Al2O3 structure was preferred as the catalyst. Scanning electron microscope and X-ray fluorescence analyses of the catalyst produced by the impregnation method were carried out. In order to determine the NOx conversion efficiency of ethanol-biodiesel mixtures in the selective catalytic reduction system, tests were carried out at different engine loads and different exhaust gas temperatures under actual operating conditions. As a result of the tests carried out, it was concluded that the reductant, which consists of 15% biodiesel and 85% ethanol, has the highest conversion performance.
机译:选择性催化还原是用于控制柴油发动机中NOx污染物的应用。尿素水溶液,商业称为阿联酋和通过混合纯水和NH 3获得,是最常用的还原剂,而V2O5 -WO3 / TiO2结构具有广泛用途作为SCR技术的催化剂。然而,包括Adblue和V2O5-WO3 / TiO2结构的SCR系统在低气气温下具有低NOx转换效率。使用烃作为还原剂和含有银的催化剂改善了低排气温度下选择性催化还原系统的转化效率。在这项工作中,研究了在存在碳氢化合物存在下的柴油发动机的选择性催化还原NOx排放。虽然使用乙醇和生物柴油混合物作为烃,但是Ag-Pt / Al 2 O 3结构优选为催化剂。通过浸渍法产生的催化剂扫描电子显微镜和X射线荧光分析。为了确定选择性催化还原系统中乙醇 - 生物柴油混合物的NOx转化效率,在实际操作条件下在不同的发动机负载和不同的排气温度下进行试验。由于进行了测试的结果,得出结论是,由15%生物柴油和85%乙醇组成的还原剂具有最高的转化性能。

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