首页> 外文期刊>SAE International Journal of Fuels and Lubricants >The Effect of NO_2/NO_x Ratio on the Performance of a SCR Downstream of a SCR Catalyst on a DPF
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The Effect of NO_2/NO_x Ratio on the Performance of a SCR Downstream of a SCR Catalyst on a DPF

机译:NO_2 / NO_X比率对DPF对SCR催化剂下游的SCR性能的影响

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摘要

Different aftertreatment systems consisting of a combination of selective catalytic reduction (SCR) and SCR catalyst on a diesel particulate filter (DPF) (SCR-F) are being developed to meet future oxides of nitrogen (NO_x) emissions standards being set by the Environmental Protection Agency (EPA) and the California Air Resources Board (CARB). One such system consisting of a SCRF with a downstream SCR was used in this research to determine the system NO_x reduction performance using experimental data from a 2013 Cummins 6.7L ISB (Interact System B) diesel engine and model data. The contribution of the three SCR reactions on NO_x reduction performance in the SCR-F and the SCR was determined based on the modeling work. The performance of a SCR was simulated with a one-dimensional (1D) SCR model. A NO_2/NO_x ratio of 0.5 was found to be optimum for maximizing the NO_x reduction and minimizing NH_3 slip for the SCR for a given value of ammonia-to-NO_x ratio (ANR). The SCRF + SCR system was simulated using the 2D SCR-F + 1D SCR system model. For all the test conditions, the NO_2/NO_x ratio downstream of the SCRF was found to be 0 due to NO_2 consumption by the NO_2 assisted particulate matter (PM) oxidation and the SCR reactions in the SCRF. Due to this low NO_2/NO_x ratio, the NO_x conversion performance of the downstream SCR was limited to a maximum of 70% and the system performance to a maximum of 97%. The low SCR performance is due to low fast SCR (<10%) and high standard SCR reaction (>85%) rates in the downstream SCR. Also, high NH_3 slip due to lower utilization by the SCR reactions was observed from the SCR. Improved NO_2/NO_x ratio at the SCRF inlet results in NO_2 slip at the SCRF outlet, which then leads to better NO_x reduction performance of this system.
机译:正在开发出由选择性催化还原(SCR)(SCR-F)上的选择性催化还原(SCR)和SCR催化剂的组合组成的不同后处理系统,以满足由环境保护设定的氮气(NO_X)排放标准的未来氧化物代理(EPA)和加州空气资源板(CARB)。在该研究中使用了一种由具有下游SCR的SCRF组成的这样的系统,以确定使用来自2013 Cummins 6.7L ISB(Interact System B)柴油发动机和模型数据的实验数据的系统NO_X降低性能。基于建模工作确定了三种SCR反应对SCR-F和SCR中的NO_X缩减性能的贡献。使用一维(1D)SCR模型模拟SCR的性能。发现NO_2 / NO_X比为0.5的最佳最佳,用于最大化NO_X降低,并最小化SCR的SCR的NH_3滑动,用于给定的氨至NO_X比率(ANR)。使用2D SCR-F + 1D SCR系统模型模拟SCRF + SCR系统。对于所有测试条件,由于NO_2辅助颗粒物质(PM)氧化和SCRF中的SCR反应,发现SCRF下游下游的NO_2 / NO_X比率为0。由于这种低NO_2 / NO_X比率,下游SCR的NO_X转换性能限制在最大70%,系统性能最高为97%。低SCR性能是由于下游SCR中的低快速SCR(<10%)和高标准的SCR反应(> 85%)速率。此外,从SCR观察到由于SCR反应的较低而导致的高NH_3滑动。在SCRF入口处的RO_2 / NO_X比率提高NO_2 / NO_X比率在SCRF插座上的NO_2滑动,然后导致该系统的更好的NO_X降低性能。

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