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轻型汽油车实际尾管排放率的地理空间变化。

Geospatial Variation of Real-World Tailpipe Emission Rates for Light-Duty Gasoline Vehicles.

机构信息

Department of Civil, Construction and Environmental Engineering, North Carolina State University, Campus Box 7908, Raleigh, North Carolina 27695-7908, United States.

出版信息

Environ Sci Technol. 2020 Jul 21;54(14):8968-8979. doi: 10.1021/acs.est.0c00489. Epub 2020 Jul 8.

Abstract

Spatial variability in real-world on-road tailpipe light-duty gasoline vehicle nitrogen oxides, hydrocarbon, carbon monoxide, and carbon dioxide emission rates, the locations of emissions hotspots, and factors that explain spatial variability are quantified. A sample of 205 vehicles were measured on four predefined round-trip study routes using Portable Emission Measurement Systems. The trips on each route were divided into segments, averaging 1/4 mile in length. Segment-average emission rates were estimated based on measured 1 Hz emission rates. Emission hotspots are defined as segments with ≥90th percentile of segment-average emission rates. The hotspots have average emission rates 2-4 times greater, depending on the pollutant, than other segments. Hotspots are of heterogeneous characteristics including road attributes and vehicle activity metrics. For example, some hotspots were on arterial roads with an upstream signalized intersection and positive road grade, whereas some hotspots were on interstates with positive grade. Vehicle activity metrics, including average vehicle specific power and relative positive acceleration, help identify the hotspots. To reliably identify a fleet-average hotspot, data are needed for at least 36-130 vehicles, depending on the pollutant.

摘要

量化了实际道路上轻型汽油车尾气管氮氧化物、碳氢化合物、一氧化碳和二氧化碳排放率的空间变异性、排放热点的位置以及解释空间变异性的因素。使用便携式排放测量系统对 205 辆汽车在四条预先设定的往返研究路线上进行了测量。每条路线上的行程分为段,每段平均长度为 1/4 英里。基于测量的 1 Hz 排放率估算了段平均排放率。排放热点被定义为排放率达到段平均排放率 90%以上的段。热点的平均排放率比其他段高出 2-4 倍,具体取决于污染物。热点具有异质特征,包括道路属性和车辆活动指标。例如,一些热点位于带有信号控制交叉口和上坡的干道上,而一些热点则位于带有上坡的州际公路上。车辆活动指标,包括平均车辆比功率和相对正加速度,有助于识别热点。要可靠地识别车队平均热点,需要至少 36-130 辆汽车的数据,具体取决于污染物。

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