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Experimental Assessment of an Electrofilter and a Tandem Positive-Negative Corona Charger for the Measurement of Charged Nanoparticles formed in Selective Catalytic Reduction Systems

机译:用于测量在选择性催化还原系统中的带电纳米粒子测量的电滤器和串联正阴性电晕充电器的实验评估

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摘要

Onboard measurement of non-volatile particle number (PN) emissions with portable emissions measurement systems (PEMS) was introduced for the type-approval of passenger cars in Europe since 2017 and is foreseen for heavy-duty (HD) vehicles in 2021. First studies on the performance of PN-PEMS with HD engine exhaust revealed larger differences between established PN-PEMS techniques than what was observed for passenger cars. Particles forming in selective catalytic reduction (SCR) systems for NOx of late technology HD engines have recently been identified as a potential reason for the observed differences. The formed particles have a size distribution peaking below the regulatory limit of 23 nm and most importantly acquire high (more than one) positive charges at the elevated exhaust temperatures. Precise measurement of such highly charged nanosized particles with PN-PEMS instrumentation utilizing diffusion charger (DC) based counters requires proper conditioning of these charges. Two approaches were investigated in this study: (a) an electrofilter (EF) to completely remove charged particles below the regulated size and (b) a tandem negative-positive corona (TC) charger to directly condition pre-charged particles. The two technical solutions were tested alongside the unmodified DC-based PN-PEMS, a PN-PEMS utilizing a condensation particle counter (CPC) and a reference stationary PN system using exhaust of two SCR-equipped HD engines. The results confirmed that the particles forming in such SCR systems are responsible for the observed inconsistencies and that both technical solutions efficiently address the interferences of these pre-charged nanoparticles.
机译:由于2017年以来,引入了具有便携式排放测量系统(PEMS)的非易失性粒子数(PN)排放的船上测量,以自2017年以来欧洲乘用车的批准,并在2021年预见重型(HD)车辆。第一研究在HD发动机排气的PN-PEMS的性能下显示了所建立的PN-PEM技术与乘用车的技术之间的较大差异。最近被确定为观察到的差异的潜在原因的选择性催化还原(SCR)系统中形成的颗粒。所形成的颗粒的尺寸分布在23nm的调节极限下达到峰值,并且最重要的是在升高的排气温度下获取高(多于一个)正电荷。使用基于扩散充电器(DC)的计数器的PN-PEMS仪器的这种高带电纳米粒子颗粒的精确测量需要对这些电荷进行适当的调理。在该研究中研究了两种方法:(a)电滤网(EF)以完全除去尺寸低于调节尺寸的带电粒子,(b)串联的负阳性电晕(Tc)充电器直接条件预充电颗粒。使用未经修改的DC的PN-PEM,利用冷凝粒子计数器(CPC)和使用两个SCR的高清发动机的排气,与PN-PEM的PN-PEM和参考固定PN系统一起测试。结果证实,在这种SCR系统中形成的颗粒负责观察到的不一致性,并且两种技术方案都有效地解决了这些预充电纳米颗粒的干扰。

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