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The Effect of a Three-Way Catalytic Converter on Particulate Matter from a Gasoline Direct-Injection Engine During Cold-Start

机译:三元催化转化器对冷启动期间汽油直喷发动机颗粒物质的影响

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This work investigates the effect of a three-way catalytic converter and sampling dilution ratio on nano-scale exhaust particulate matter emissions from a gasoline direct-injection engine during cold-start and warm-up transients. Experimental results are presented from a four cylinder in-line, four stroke, wall-guided direct-injection, turbo-charged and inter-cooled 1.6 litre gasoline engine. A fast-response particulate spectrometer for exhaust nano-particle measurement up to 1000 nm was utilised. It was observed that the three-way catalytic converter had a significant effect on particle number density, reducing the total particle number by up to 65% over the duration of the cold-start test. The greatest change in particle number density occurred for particles less than 23 nm diameter, with reductions of up to 95% being observed, whilst the number density for particles above 50 nm diameter exhibited a significant increase. The exhaust temperature plays a significant role on the influence of the catalytic converter on the nano-scale particulate matter. It is evident that the dilution ratio of the exhaust sample has a distinct effect on the particulate matter number and size distribution, influencing the engine-out PM more significantly than the tailpipe-out PM during cold-start engine operation. The catalytic converter also has a considerable effect on the estimated total particle mass.
机译:该工作研究了三元催化转化器和采样稀释比在冷启动和预热瞬变期间纳米级排气颗粒物质排放的影响。实验结果由四缸在线,四冲程,墙壁引导的直喷,涡轮增压和冷却的1.6升汽油发动机。利用用于排气纳米颗粒测量的快速响应颗粒度光谱仪,其高达1000nm。观察到三元催化转化器对粒子数密度有显着影响,在冷启动试验期间将总粒子数降低至65%。对于小于23nm的颗粒,粒子数密度的最大变化发生在小于23nm的颗粒,不应观察到高达95%的颗粒,而颗粒的数量密度高于50nm的直径表现出显着增加。排气温度对催化转化器对纳米级颗粒物质的影响起着重要作用。显然,排气样品的稀释比对颗粒物数和尺寸分布具有明显的效果,在冷启动发动机操作期间影响发动机输出量比尾管输出量显着。催化转化器对估计的总颗粒物质具有相当大的影响。

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