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Asphalt-related emissions are a major missing nontraditional source of secondary organic aerosol precursors

机译:与沥青相关排放是二次有机气溶胶前体的主要缺失的非传统来源

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Asphalt-based materials are abundant and a major nontraditional source of reactive organic compounds in urban areas, but their emissions are essentially absent from inventories. At typical temperature and solar conditions simulating different life cycle stages (i.e., storage, paving, and use), common road and roofing asphalts produced complex mixtures of organic compounds, including hazardous pollutants. Chemically speciated emission factors using high-resolution mass spectrometry reveal considerable oxygen and reduced sulfur content and the predominance of aromatic (~30%) and intermediate/semivolatile organic compounds (~85%), which together produce high overall secondary organic aerosol (SOA) yields. Emissions rose markedly with moderate solar exposure (e.g., 300% for road asphalt) with greater SOA yields and sustained SOA production. On urban scales, annual estimates of asphalt-related SOA precursor emissions exceed those from motor vehicles and substantially increase existing estimates from noncombustion sources. Yet, their emissions and impacts will be concentrated during the hottest, sunniest periods with greater photochemical activity and SOA production.
机译:沥青基材料丰富,城市地区反应性有机化合物的主要非传统源,但其排放基本上没有库存。在典型的温度和太阳能条件下模拟不同的生命周期阶段(即,储存,铺路和使用),常见的道路和屋顶沥青产生复杂的有机化合物混合物,包括危险污染物。使用高分辨率质谱的化学指出的排放因子揭示了相当大的氧气和降低硫含量,芳族(〜30%)和中间/半抗性有机化合物(〜85%)的优势,其中共同产生高总体二次有机气溶胶(SOA)产量。排放量明显着色,具有适中的太阳能暴露(例如,道路沥青300%),具有较大的SOA产量和持续的SOA生产。在城市尺度上,沥青相关SOA前体排放的年度估计数量超过机动车辆的估计数,并大幅增加了非洲爆炸性源的现有估计。然而,他们的排放和影响将在最热门,最阳光的时期,具有更大的光化学活动和SOA生产。

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