首页> 外文期刊>Journal of Zhejiang University. Science, A >Impact of diesel emission fluid soaking on the performance of Cu-zeolite catalysts for diesel NH3-SCR systems
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Impact of diesel emission fluid soaking on the performance of Cu-zeolite catalysts for diesel NH3-SCR systems

机译:柴油发射流体浸泡对柴油NH3-SCR系统Cu-沸石催化剂性能的影响

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diesel emission fluid (DEF) soaking and urea deposits on selective catalytic reduction (SCR) catalysts are critical issues for real diesel engine NH3-SCR systems. To investigate the impact of DEF soaking and urea deposits on SCR catalyst performance, fresh cu-zeolite catalyst samples were drilled from a full-size SCR catalyst. Those samples were impregnated with DEF solutions and subsequently hydrothermally treated to simulate DEF soaking and urea deposits on real SCR catalysts during diesel engine operations. Their SCR performance was then evaluated in a flow reactor with a four-step test protocol. Test results show that the DEF soaking leached some Cu from the SCR catalysts and slightly reduced their Cu loadings. The loss of Cu and associated metal sites on the catalysts weakened their catalytic oxidation abilities and caused lower NO/NH3 oxidation and lower high-temperature N2O selectivity. Lower Cu loading also made the catalysts less active to the decomposition of surface ammonium nitrates and decreased low-temperature N2O selectivity. Cu loss during DEF impregnation released more acid sites on the surface of the catalysts and increased their acidities, and more NH3 was able to be adsorbed and involved in SCR reactions at medium and high temperatures. Due to lower NH3 oxidation and higher NH3 storage, the DEF-impregnated SCR catalyst samples showed higher NOx conversion above 400 °C compared with the non-soaked one. The negative impact of urea deposits during DEF impregnation was not clearly observed, because the high-temperature hydrothermal treatment helped to remove the urea deposits.
机译:柴油发射液(DEF)浸泡和尿素沉积物对选择性催化还原(SCR)催化剂是真实柴油发动机NH3-SCR系统的关键问题。为了研究DEF浸泡和尿素沉积对SCR催化剂性能的影响,从全尺寸的SCR催化剂钻出新鲜的Cu-沸石催化剂样品。将这些样品用DEF溶液浸渍并随后在柴油发动机操作期间模拟真实SCR催化剂上的DEF浸泡和尿素沉积物。然后在具有四步测试协议的流量反应器中评估其SCR性能。试验结果表明,浸泡浸泡从SCR催化剂中浸出一些Cu,并略微减少其Cu载荷。催化剂上的Cu和相关金属位点的损失削弱了它们的催化氧化能力,并导致较低的NO / NH 3氧化和较低的高温N 2 O选择性。较低的Cu负载也使催化剂对硝酸盐表面铵的分解并降低低温N 2 O选择性。在DEC浸渍过程中Cu损耗在催化剂表面上释放更多的酸位点并增加其酸性,并且能够吸附更多NH 3并且在中等和高温下吸附并参与SCR反应。由于NH 3氧化和较高的NH 3储存,DEF浸渍的SCR催化剂样品与非浸泡物相比显示出高于400℃以上的NOx转化率。尿素沉积物在除浸渍期间的负面影响没有清楚地观察到,因为高温水热处理有助于去除尿素沉积物。

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