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Development and experimental studies of a control-oriented SCR model for a two-catalyst urea-SCR system

机译:两催化剂尿素-SCR系统面向控制的SCR模型的开发和实验研究

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This paper presents the development and experimental studies of a complete selective catalytic reduction (SCR) system control-oriented model of a two-catalyst SCR system with onboard NO_x and ammonia sensors. SCR catalysts have been popularly regarded as effective means for NO_x emission control in medium- and heavy-duty vehicles in recent years. However, control of urea dosing upstream of the SCR systems still remains a challenge in the field mainly due to the complicated SCR dynamics and limited/inaccurate feedback information. A control-oriented SCR model is thus indispensable for SCR control systems. A variety of experimental tests were examined using a Diesel engine-after-treatment system consisting of a diesel oxidation catalyst (DOC)/diesel paniculate filter (DPF), two-SCR catalysts (Fe-Zeolite type) in series, three NO_x sensors, and two NH_3 sensors. By utilizing multiple emission sensors and the two-catalyst SCR setup, the sensor properties and SCR system dynamics were studied. Grounded in the experimental investigations and the physical insights, a control-oriented model for a complete SCR system was developed and validated with experimental data.
机译:本文介绍了带有机载NO_x和氨传感器的双催化剂SCR系统的完全选择性催化还原(SCR)面向控制模型的开发和实验研究。近年来,SCR催化剂被普遍认为是控制中型和重型车辆中NO_x排放的有效手段。然而,主要由于复杂的SCR动力学和有限/不准确的反馈信息,SCR系统上游的尿素计量控制仍然是一个挑战。因此,面向控制的SCR模型对于SCR控制系统是必不可少的。使用由柴油机氧化催化剂(DOC)/柴油颗粒过滤器(DPF),两个串联的SCR催化剂(铁沸石类型),三个NO_x传感器组成的Diesel发动机后处理系统,对各种实验测试进行了检查。和两个NH_3传感器。通过利用多个排放传感器和双催化剂SCR装置,研究了传感器性能和SCR系统动力学。基于实验研究和物理见解,开发了完整SCR系统的面向控制模型,并通过实验数据进行了验证。

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