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Radio-Frequency-Controlled Urea Dosing for NH3-SCR Catalysts: NH3 Storage Influence to Catalyst Performance under Transient Conditions

机译:NH3-SCR催化剂的射频控制尿素剂量:瞬态条件下NH3的储存对催化剂性能的影响

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摘要

Current developments in exhaust gas aftertreatment led to a huge mistrust in diesel driven passenger cars due to their NOx emissions being too high. The selective catalytic reduction (SCR) with ammonia (NH3) as reducing agent is the only approach today with the capability to meet upcoming emission limits. Therefore, the radio-frequency-based (RF) catalyst state determination to monitor the NH3 loading on SCR catalysts has a huge potential in emission reduction. Recent work on this topic proved the basic capability of this technique under realistic conditions on an engine test bench. In these studies, an RF system calibration for the serial type SCR catalyst Cu-SSZ-13 was developed and different approaches for a temperature dependent NH3 storage were determined. This paper continues this work and uses a fully calibrated RF-SCR system under transient conditions to compare different directly measured and controlled NH3 storage levels, and NH3 target curves. It could be clearly demonstrated that the right NH3 target curve, together with a direct control on the desired level by the RF system, is able to operate the SCR system with the maximum possible NOx conversion efficiency and without NH3 slip.
机译:废气后处理技术的最新发展由于其NOx排放过高,导致人们对柴油驱动的乘用车产生了极大的不信任。以氨(NH3)为还原剂的选择性催化还原(SCR)是当今唯一能够满足即将到来的排放限值的方法。因此,用于监测SCR催化剂上NH3负载量的基于射频(RF)的催化剂状态确定具有巨大的减排潜力。关于该主题的最新工作证明了该技术在实际条件下在发动机试验台上的基本功能。在这些研究中,开发了针对串联型SCR催化剂Cu-SSZ-13的RF系统校准,并确定了取决于温度的NH3储存的不同方法。本文继续进行这项工作,并在瞬态条件下使用经过完全校准的RF-SCR系统来比较直接测量和控制的不同NH3存储量以及NH3目标曲线。可以清楚地证明,正确的NH3目标曲线以及RF系统对所需水平的直接控制,能够以最大可能的NOx转化效率且没有NH3泄漏地操作SCR系统。

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