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Speciation of Nitrogen Compounds in the Tailpipe Emissions from a SI Car under Real World Driving Conditions

机译:在现实世界驾驶条件下Si汽车排放尾气排放中的氮化合物的形态

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The tailpipe exhaust emissions were measured using a EURO4 emissions compliant SI car equipped with on-board measurement systems such as a FTIR system for gaseous emission, a differential GPS for velocity, altitude and position, thermal couples for temperatures, and a MAX fuel meter for transient fuel consumption. Various nitrogen species emissions (NO, NO_2, NO_x, NH_3, HCN and N_2O) were measured at 0.5 Hz. The tests were designed and employed using two real world driving cycles/routes representing a typical urban road network located in a densely populated area and main crowded road. Journeys at various times of the day were conducted to investigate traffic conditions impacts such as traffic and pedestrian lights, road congestion, grade and turning on emissions, engine thermal efficiency and fuel consumption. The time aligned vehicle moving parameters with Nitrogen pollutant emission data and fuel consumption enabled the micro-analysis of correlations between these parameters. The average data for journeys such as emissions, thermal efficiency and fuel consumption were presented, though this paper is focused on nitrogen compounds. Traffic events and vehicle transient movements' impact on emissions were studied. Engine power output has been calculated by using vehicle specific power (VSP). The analysis result of tailpipe emissions and their relation to real world driving profile improved understanding of urban area nitrogen compound emissions, which will be useful for controlling of urban air quality.
机译:尾巴废气排放是使用配备有机板测量系统的欧4排放量的Si汽车测量,例如用于气体发射的FTIR系统,用于速度,高度和位置的差动GPS,温度热耦合,以及最大燃料表瞬态燃料消耗。在0.5Hz下测量各种氮物质排放(NO,NO_2,NO_X,NH_3,HCN和N_2O)。使用两个现实世界驾驶循环/路线设计和采用代表典型的城市道路网络,该航线设计和使用,该航线位于密集地区和主要拥挤的道路上。在一天中的各个时代的旅程进行了调查交通和行人灯,道路拥堵,等级和对排放,发动机热效率和燃料消耗等交通条件影响。与氮污染发射数据和燃料消耗的时间对齐的车辆移动参数使得这些参数之间的相关性进行了微观分析。提出了排放,热效率和燃料消耗等旅程的平均数据,尽管本文集中于氮化合物。研究了交通赛事和车辆瞬态运动对排放的影响。通过使用车辆特定功率(VSP)计算发动机电源输出。尾管排放的分析结果及其与现实世界驾驶轮廓的关系改善了对城市氮复合排放的理解,可用于控制城市空气质量。

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