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Emissions of metals associated with motor vehicle roadways

机译:与机动车道有关的金属排放

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Emissions of metals and other particle-phase species from on-road motor vehicles were measured in two tunnels in Milwaukee, WI during the summer of 2000 and winter of 2001. Emission factors were calculated from measurements of fine (PM2.5) and coarse (PM10) particulate matter at tunnel entrances and exits, and effects of fleet composition and season were investigated. Cascade impactors (MOUDI) were used to obtain size-resolved metal emission rates. Metals were quantified with inductively-coupled plasma mass spectrometry (ICP-MS) and X-ray fluorescence (XRF). PM10 emission rates ranged from 38.7 to 201 mg km(-1) and were composed mainly of organic carbon (OC, 30%), inorganic ions (sulfate, chloride, nitrate, ammonium, 20%), metals (19%), and elemental carbon (EC, 9.3%). PM10 metal emissions were dominated by crustal elements Si, Fe, Ca, Na, Mg, Al, and K, and elements associated with tailpipe emissions and brake and tire wear, including Cu, Zn, Sb, Ba, Pb, and S. Metals emitted in PM2.5 were lower (11.6% of mass). Resuspension of roadway dust was dependent on weather and road surface conditions, and increased emissions were related to higher traffic volumes and fractions of heavy trucks. Emission of noble metals from catalytic converters appeared to be impacted by the presence of older vehicles. Elements related to brake wear were impacted by enriched road dust resuspension, but correlations between these elements in PM2.5 indicate that direct brake wear emissions are also important. A submicrometer particle mode was observed in the emissions of Pb, Ca, Fe, and Cu.
机译:在2000年夏季和2001年冬季,在威斯康星州密尔沃基的两条隧道中测量了道路机动车辆的金属和其他颗粒相物种的排放。排放因子是通过对细颗粒物(PM2.5)和粗颗粒物(研究了隧道出入口的颗粒物PM10,以及车队组成和季节的影响。级联撞击器(MOUDI)用于获得尺寸分辨的金属排放率。通过电感耦合等离子体质谱(ICP-MS)和X射线荧光(XRF)对金属进行定量。 PM10排放速率介于38.7至201 mg km(-1)之间,主要由有机碳(OC,30%),无机离子(硫酸根,氯离子,硝酸根,铵离子,20%),金属(19%)和元素碳(EC,9.3%)。 PM10的金属排放主要由地壳元素Si,Fe,Ca,Na,Mg,Al和K以及与尾气排放以及刹车和轮胎磨损相关的元素(包括Cu,Zn,Sb,Ba,Pb和S)主导。 PM2.5中的排放较低(占质量的11.6%)。道路尘埃的重悬取决于天气和路面状况,排放量的增加与较高的交通量和重型卡车的比例有关。催化转换器产生的贵金属排放似乎受到较旧车辆的影响。与制动器磨损相关的元素受到丰富的道路灰尘重悬浮的影响,但是PM2.5中这些元素之间的相关性表明,直接释放制动器磨损也很重要。在Pb,Ca,Fe和Cu的排放中观察到亚微米粒子模式。

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