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首页> 外文期刊>Atmospheric environment >Vehicle-based road dust emission measurement - Part II: Effect of precipitation, wintertime road sanding, and street sweepers on inferred PM10 emission potentials from paved and unpaved roads
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Vehicle-based road dust emission measurement - Part II: Effect of precipitation, wintertime road sanding, and street sweepers on inferred PM10 emission potentials from paved and unpaved roads

机译:车用道路扬尘排放量测量-第二部分:降雨,冬季道路打磨和清扫车对铺装和未铺装道路推断的PM10排放势的影响

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Testing Re-Entrained Kinetic Emissions from Roads (TRAKER) is a new technique to infer paved and unpaved road dust PM10 emission potentials based on particulate matter (PM) measurements made onboard a moving vehicle. Light scattering instruments mounted in front and behind the vehicle's tires measure the differential particle concentration of dust suspended by the vehicle's tire in contact with the road surface. Through empirical regressions relating the differential concentration (i.e. TRAKER signal) with the vehicle speed and the downwind flux of PM10 particles from the road, an equation is derived to infer the speed independent road dust emission potential from the measured TRAKER signal. Measurements from TRAKER offer a new perspective on the processes that affect road dust emissions. The system was used to investigate temporal changes in emission potentials from paved roads in both the winter and summer in the Treasure Valley in Southwest Idaho. During the 3-week wintertime sampling period, the residential road dust PM10 emission potential decreased by similar to50%. Summertime PM10 emission potentials were similar to those observed at the end of the winter sampling and showed no upward or downward trends. Wintertime unpaved road emissions increased consistently with the number of days since the last rainfall. Measurement of road dust emission potentials after road sanding on dry roads indicated a 75% increase in PM10 emissions after 2.5 h. This effect was short lived and emission potentials returned to their pre-sanding levels within 8 h of the sand application. Street sweeping with mechanical and vacuum sweepers was found to offer no measurable reduction in PM10 emission potentials. On several roads, the PM10 emission potentials actually increased immediately after vacuum sweeping. Long term effects of street sweeping on road dust emissions were not evaluated as part of this study and may offer some overall reduction in PM emissions from paved roads. (C) 2003 Elsevier Ltd. All rights reserved. [References: 11]
机译:测试道路的二次夹带动能排放物(TRAKER)是一项新技术,可基于在移动车辆上进行的颗粒物(PM)测量来推断已铺设和未铺设的道路灰尘PM10排放潜力。安装在车辆轮胎前后的光散射仪器可测量与路面接触的轮胎悬浮的灰尘的微分浓度。通过经验回归将差分浓度(即TRAKER信号)与车速和来自道路的PM10颗粒的顺风通量相关联,可以得出一个方程式,以根据测得的TRAKER信号推断与速度无关的道路扬尘潜力。 TRAKER的测量为影响道路扬尘排放的过程提供了新的视角。该系统用于调查爱达荷州西南部Treasure Valley冬季和夏季路面的潜在排放量随时间的变化。在为期3周的冬季采样期间,住宅道路粉尘PM10排放潜力降低了约50%。夏季PM10的排放潜力与冬季采样结束时观察到的相似,并且没有上升或下降的趋势。自上次降雨以来,冬季未铺砌的道路排放量与天数一致。在干燥的道路上进行砂磨后对道路粉尘排放潜力的测量表明,2.5小时后PM10排放量增加了75%。这种影响是短暂的,在喷砂后的8小时内,排放势又恢复到了喷砂前的水平。发现使用机械和真空清扫机进行街道清扫无法显着降低PM10排放潜力。实际上,在几条道路上,真空扫除后,PM10的排放势头实际上会增加。这项研究未评估街道清扫对道路扬尘排放的长期影响,并且可能从总体上减少铺路的PM排放。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:11]

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