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Chemistry of new particle growth in mixed urban and biogenic emissions a?? insights from CARES

机译:城市和生物混合排放中新粒子生长的化学反应来自CARES的见解

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pstrongAbstract./strong Regional new particle formation and growth events (NPEs) were observed on most days over the Sacramento and western Sierra foothills area of California in June 2010 during the Carbonaceous Aerosols and Radiative Effect Study (CARES). Simultaneous particle measurements at both the T0 (Sacramento, urban site) and the T1 (Cool, rural site located ~40 km northeast of Sacramento) sites of CARES indicate that the NPEs usually occurred in the morning with the appearance of an ultrafine mode at ~15 nm (in mobility diameter, iD/isubm/sub, measured by a mobility particle size spectrometer operating in the range 10-858 nm) followed by the growth of this modal diameter to ~50 nm in the afternoon. These events were generally associated with southwesterly winds bringing urban plumes from Sacramento to the T1 site. The growth rate was on average higher at T0 (7.1 ?± 2.7 nm hsupa??1/sup) than at T1 (6.2 ?± 2.5 nm hsupa??1/sup), likely due to stronger anthropogenic influences at T0. Using a high-resolution time-of-flight aerosol mass spectrometer (HR-ToF-AMS), we investigated the evolution of the size-resolved chemical composition of new particles at T1. Our results indicate that the growth of new particles was driven primarily by the condensation of oxygenated organic species and, to a lesser extent, ammonium sulfate. New particles appear to be fully neutralized during growth, consistent with high NHsub3/sub concentration in the region. Nitrogen-containing organic ions (i.e., CHNsup+/sup, CHsub4/subNsup+/sup, Csub2/subHsub3/subNsup+/sup, and Csub2/subHsub4/subNsup+/sup) that are indicative of the presence of alkyl-amine species in submicrometer particles enhanced significantly during the NPE days, suggesting that amines might have played a role in these events. Our results also indicate that the bulk composition of the ultrafine mode organics during NPEs was very similar to that of anthropogenically influenced secondary organic aerosol (SOA) observed in transported urban plumes. In addition, the concentrations of species representative of urban emissions (e.g., black carbon, CO, NOsubx/sub, and toluene) were significantly higher whereas the photo-oxidation products of biogenic VOCs (volatile organic compounds) and the biogenically influenced SOA also increased moderately during the NPE days compared to the non-event days. These results indicate that the frequently occurring NPEs over the Sacramento and Sierra Nevada regions were mainly driven by urban plumes from Sacramento and the San Francisco Bay Area, and that the interaction of regional biogenic emissions with the urban plumes has enhanced the new particle growth. This finding has important implications for quantifying the climate impacts of NPEs on global scale./p.
机译:> >摘要。2010年6月,在碳质气溶胶和辐射效应研究(CARES)期间,在加利福尼亚州的萨克拉曼多和塞拉利昂山麓丘陵地区,大多数日子都观察到了区域新的颗粒形成和生长事件(NPE)。 )。在CARES的T0(萨克拉曼多,城市站点)和T1(凉爽,农村的站点,距萨克拉曼多东北约40 km)处同时进行的颗粒测量表明,NPE通常发生在早晨,在〜出现超精细模式。 15 nm(迁移率直径, D m ,由在10-858 nm范围内运行的迁移率粒径谱仪测量),然后将该模态直径增长至〜下午50海里。这些事件通常与西南风将萨克拉门托的城市羽流带到T1站点有关。在T0(7.1?±2.7 nm h a ?? 1 )处的生长速率平均高于在T1(6.2?±2.5​​ nm h a ?? 1 )处的生长速率。 ,这可能是由于在T0时更强的人为影响。使用高分辨率的飞行时间气溶胶质谱仪(HR-ToF-AMS),我们研究了T1时新粒子的尺寸分辨化学成分的演变。我们的结果表明,新颗粒的生长主要是由含氧有机物质的缩合驱动的,硫酸铵的凝结程度较小。新颗粒似乎在生长过程中被完全中和,这与该区域的NH 3 浓度高一致。含氮有机离子(即CHN + ,CH 4 N + ,C 2 H 3 N + 和C 2 H 4 N + )表示存在在NPE期间,亚微米级颗粒中烷基胺物种的数量显着增加,表明胺可能在这些事件中起作用。我们的结果还表明,在NPE期间,超细模式有机物的总体组成与在城市羽流中观察到的人为影响的二次有机气溶胶(SOA)的组成非常相似。此外,代表城市排放的物种(例如,黑碳,CO,NO x 和甲苯)的浓度显着更高,而生物VOC(挥发性有机化合物)和与非活动日相比,在NPE期间,受生源影响的SOA也有所增加。这些结果表明,萨克拉曼多和内华达山脉地区频繁发生的NPE主要是由萨克拉曼多和旧金山湾地区的城市羽流驱动的,区域生物源排放与城市羽流的相互作用促进了新粒子的生长。这一发现对于量化NPE对全球规模的气候影响具有重要意义。

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