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首页> 外文期刊>Journal of the Air & Waste Management Association >Multispecies remote sensing measurements of vehicle emissions on Sherman Way in Van Nuys, California
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Multispecies remote sensing measurements of vehicle emissions on Sherman Way in Van Nuys, California

机译:加利福尼亚州范努伊斯谢尔曼大道上的车辆排放多物种遥感测量

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As part of the 2010 Van Nuys tunnel study, researchers from the University of Denver measured on-road fuel-specific light-duty vehicle emissions from nearly 13,000 vehicles on Sherman Way (0.4 miles west of the tunnel) in Van Nuys, California, with its multispecies Fuel Efficiency Automobile Test (FEAT) remote sensor a week ahead of the tunnel measurements. The remote sensing mean gram per kilogram carbon moNO_xide (CO), hydrocarbon (HC), and oxide of nitrogen (NO_X) measurements are 8.9% lower, 41% higher, and 24% higher than the tunnel measurements, respectively. The remote sensing CO/NO_x and HC/NO_x mass ratios are 28% lower and 20% higher than the comparable tunnel ratios. Comparisons with the historical tunnel measurements show large reductions in CO, HC, and NO_x over the past 23 yr, but little change in the HC/NO_x mass ratio since 1995. The fleet CO and HC emissions are increasingly dominated by a few gross emitters, with more than a third of the total emissions being contributed by less than 1% of the fleet. An example of this is a 1995 vehicle measured three times with an average HC emission of 419 g/kg fuel (two-stroke snowmobiles average 4 75 g/kg fuel), responsible for 4% of the total HC emissions. The 2008 economic downturn dramatically reduced the number of new vehicles entering the fleet, leading to an age increase (> 1 model year) of the Sherman Way fleet that has increased the fleet s ammonia (NH_3) emissions. The mean NH_3 levels appear little changed from previous measurements collected in the Van Nuys tunnel in 1993. Comparisons between weekday and weekend data show few fleet differences, although the fraction of light-duty diesel vehicles decreased from the weekday (1.7%) to Saturday (1.2%) and Sunday (0.6%).
机译:作为2010年Van Nuys隧道研究的一部分,丹佛大学的研究人员测量了加利福尼亚州Van Nuys的Sherman Way(隧道以西0.4英里)近13,000辆车辆的道路燃料专用轻型车辆排放,在进行隧道测量之前一周,其多品种燃油效率汽车测试(FEAT)遥感器。遥感平均克每千克碳的NOx(CO),碳氢化合物(HC)和氮氧化物(NO_X)的测量值分别比隧道测量值低8.9%,41%和24%。遥感CO / NO_x和HC / NO_x的质量比比可比的隧道比低28%,高20%。与历史隧道测量结果的比较表明,过去23年中,CO,HC和NO_x的减少量很大,但是自1995年以来,HC / NO_x质量比的变化很小。车队的CO和HC排放量越来越多地由少量总排放量所控制,排放总量的三分之一以上来自不到1%的车队。这样的一个例子是1995年测量的车辆进行了3次测量,平均HC排放量为419 g / kg燃料(两冲程雪地摩托车平均为4 75 g / kg燃料),占总HC排放量的4%。 2008年的经济不景气极大地减少了进入车队的新车数量,导致谢尔曼之路车队的使用年限增加(> 1个模型年),从而增加了车队的氨(NH_3)排放量。 NH_3的平均水平与1993年Van Nuys隧道中的先前测量值相比几乎没有变化。工作日和周末数据之间的比较显示,车队差异很小,尽管轻型柴油车辆的比例从工作日(1.7%)下降到星期六( 1.2%)和星期日(0.6%)。

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