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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Seasonal Trends of Concentration and Size Distribution of Ultrafine Particles Near Major Highways in Los Angeles
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Seasonal Trends of Concentration and Size Distribution of Ultrafine Particles Near Major Highways in Los Angeles

机译:洛杉矶主要公路附近超细颗粒物浓度和尺寸分布的季节性趋势

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Ultrafine particles (diameter <0.1 mum) have been suggested as a possible causative agent for the observed increases in mortality and morbidity with increases in particulate matter (PM) concentration.Zhu et al.conducted systematic measurements of the concentration and size distribution of ultrafine particles in the vicinity of Interstate 405 (mostly gasoline traffic) and Interstate 710 (large proportion of heavy-duty diesel traffic) in Los Angeles during the summer of 2001.The present study compares these measurements with those made at the same locations in the winter of 2001-2002.Particle number concentration and size distribution in the size range from 6 to 220 nm were measured by a condensation particle counter (CPC) and a scanning mobility particle sizer (SMPS).Measurements were taken at five distances downwind from the freeway.At each sampling location,concentrations of carbon monoxide (CO) and black carbon (BC) were also measured by a Dasibi CO monitor and an aethalometer,respectively.Average temperatures were about 7 degrees Celsius higher in summer than in winter.Wind directions are the same for both seasons,wind speeds are slightly higher in summer.Traffic densities were not statistically different between summer and winter for both the 405 and 710 freeways.The decay rates of CO and BC are slightly greater in summer than in winter for both freeways,suggesting a weaker atmospheric dilution effect in winter.Particle number concentration in the size range of 6-12 nm is significantly higher in winter than in summer.The associated concentration in that size range decreased at a slower rate in winter than in summer.The surface area concentrations in the size range of 6-220 nm are consistently higher in summer for all sampling locations.These results suggest that wintertime conditions favor greater particle formation,possibly due to increased condensation of organic vapors.These data may be useful to estimate exposure to ultrafine particles in the vicinity of major highways for epidemiological studies and to evaluate the adverse health effects of such particles.
机译:对于观察到的死亡率和发病率随颗粒物(PM)浓度的增加而提出的建议,超细颗粒(直径<0.1微米)可能是一种病因.Zhu等人对超细颗粒的浓度和尺寸分布进行了系统的测量在2001年夏季,位于洛杉矶的405号州际公路(主要是汽油交通)和710号州际公路(大部分重型柴油交通)附近。本研究将这些测量结果与2006年冬季在相同地点进行的测量结果进行了比较。 2001-2002年,通过冷凝粒子计数器(CPC)和扫描迁移率粒度仪(SMPS)测量了6至220 nm范围内的颗粒数浓度和尺寸分布,并在距高速公路下风5个距离处进行了测量。在每个采样点,还通过Dasibi CO监测仪和测湿仪对一氧化碳(CO)和黑碳(BC)的浓度进行了测量。夏季的平均温度比冬季的平均温度高约7摄氏度。两个季节的风向相同,夏季的风速略高。405和710号高速公路的夏季和冬季的交通密度在统计上没有差异两条高速公路夏季的CO和BC衰减率均比冬季略大,这说明冬季的大气稀释作用较弱.6-12 nm尺寸范围内的颗粒数浓度冬季明显高于夏季。与冬季相比,冬季在那个尺寸范围内的相关浓度下降速度较慢。夏季在所有采样位置,6-220 nm尺寸范围内的表面积浓度始终较高,这些结果表明冬季条件有利于更大的颗粒可能是由于有机蒸气凝结的增加所致。这些数据可能有助于估算在大范围附近暴露于超细颗粒的情况。或公路进行流行病学研究,并评估此类颗粒对健康的不利影响。

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