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Correlation between automotive CO, HC, NO, and PM emission factors from on-road remote sensing: implications for inspection and maintenance programs

机译:道路遥感中汽车CO,HC,NO和PM排放因子之间的相关性:对检查和维护计划的影响

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Carbon monoxide (CO), hydrocarbon (HC), and nitrogen oxide (NO) emission factors (EFs) are measured with a commercial vehicle emissions remote sensing system (VERSS) during a large-scale vehicle exhaust emissions study in Las Vegas. Particulate matter (PM) EFs are simultaneously measured for individual vehicles with a newly developed PM-VERSS based on ultraviolet backscatter light detection and ranging (Lidar). The effectiveness of CO and HC EFs as proxy for NO and PM EFs for spark-ignition vehicles is evaluated. Poor correlations were found between EFs for pollutants on an individual vehicle basis indicating that high EFs for one or more pollutants cannot be used as a predictor of high EFs for other pollutants. Stronger functional relationships became evident after averaging the EF data in bins based on rank-order of a single pollutant EF. Low overlap between the highest 10% emitters for CO, HC, NO, and PM was found. These results imply that for an effective reduction of the four pollutants, inspection and maintenance (I/M) programs, including clean screening, should measure all four pollutants individually. Fleet average CO and HC concentrations determined by gaseous VERSS were compared with fleet average CO and HC concentrations measured at low-idle and at high-idle during local I/M tests for spark-ignition vehicles. The fleet average CO concentrations measured by I/M tests at either idle were about half of those measured by remote sensing. The fleet average high-idle HC concentration measured by I/M tests was about half of that measured by VERSS while low-idle I/M and VERSS HC average concentrations were in better agreement. For a typical vehicle trip, most of the fuel is burned during non-idle conditions. I/M measurements collected during idling conditions may not be a good indicator of a vehicle's potential to be a high emitter. VERSS measurements, when the vehicle is under a load, should more effectively identify high emitting vehicles that have a large contribution to the mobile emissions inventory.
机译:一氧化碳(CO),碳氢化合物(HC)和氮氧化物(NO)排放因子(EFs)是在拉斯维加斯进行的大规模汽车尾气排放研究中使用商用汽车排放遥感系统(VERSS)测量的。借助基于紫外线反向散射光检测和测距(激光雷达)技术的最新开发的PM-VERSS,可同时测量单个车辆的颗粒物(PM)EF。评估了CO和HC EF替代火花点火车辆NO和PM EF的有效性。在单个车辆的基础上,污染物的EF之间的相关性很差,这表明一种或多种污染物的EF不能用作其他污染物的EF的预测指标。在基于单个污染物EF的等级对箱中的EF数据求平均后,更强的功能关系变得明显。发现最高的10%CO,HC,NO和PM排放源之间的重叠很小。这些结果表明,为了有效减少四种污染物,包括清洁筛查在内的检查和维护(I / M)程序应分别测量所有四种污染物。在进行火花点火车辆的本地I / M测试期间,将气态VERSS测定的车队平均CO和HC浓度与在低怠速和高怠速时测量的车队平均CO和HC浓度进行了比较。通过I / M测试在任何闲置状态下测得的车队平均CO浓度约为通过遥感测得的平均浓度的一半。通过I / M测试测得的车队平均高怠速HC浓度约为VERSS测量的一半,而低怠速I / M和VERSS HC的平均浓度更为一致。对于典型的车辆旅行,大部分燃料在非怠速情况下燃烧。在空转条件下收集的I / M测量值可能不能很好地表明车辆成为高排放源的潜力。当车辆处于负载状态时,VERSS测量应更有效地识别对移动排放清单有重大贡献的高排放车辆。

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