Science and Technology Program, University of Washington-Bothell, Bothell, WA, USA; Air Quality Research, Finnish Meteorological Institute, Helsinki, Finland.
J Environ Manage. 2013 Nov 15;129:333-40. doi: 10.1016/j.jenvman.2013.07.023. Epub 2013 Aug 26.
Elevated particulate matter concentrations due to Asian long-range transport (LRT) are frequently observed in the free troposphere (FT) above the Pacific Northwest, U.S. Transport of this aerosol from the FT to the boundary layer (BL) and its effect to local air quality remain poorly constrained. We used data collected at the Mount Bachelor observatory (MBO, 2.8 km a.s.l) and from ground stations in the Pacific Northwest to study transport of fine particulate matter (PM) from the FT to the BL. During Asian LRT episodes PM concentrations were clearly elevated above the corresponding monthly averages at MBO as well as at low elevation sites across Washington and Oregon. Also, a clear correlation between MBO and low elevation sites was observed, indicating that LRT episodes are seen in both the FT and BL. In addition, drum impactor measurements show that the chemical composition of PM at MBO was similar to that measured at the BL sites. Using a simple regression model, we estimate that during springtime, when the transport from Asia is most effective, the contribution of Asian sources to PM2.5 in clean background areas of the Pacific Northwest was on average 1.7 μg m(-3) (representing approximately 50-80% of PM). The influence of LRT PM was also seen in measurement stations situated in the urban and urban background areas. However, the fraction of LRT PM was less pronounced (36-50% of PM) due to larger local emissions in the urban areas.
由于亚洲长程传输(LRT),美国太平洋西北地区的自由对流层(FT)中经常观测到颗粒物浓度升高。这种气溶胶从 FT 传输到边界层(BL)及其对当地空气质量的影响仍然受到很大限制。我们使用在 Mount Bachelor 观测站(MBO,海拔 2.8 公里)和太平洋西北地区地面站收集的数据来研究细颗粒物(PM)从 FT 到 BL 的传输。在亚洲 LRT 期间,MBO 以及华盛顿和俄勒冈州的低海拔站点的 PM 浓度明显高于相应的月度平均值。此外,MBO 和低海拔站点之间也观察到明显的相关性,表明 LRT 事件在 FT 和 BL 中都可见。此外,鼓式冲击器测量表明,MBO 的 PM 化学组成与 BL 站点测量的化学组成相似。使用简单的回归模型,我们估计在春季,当来自亚洲的传输最有效时,亚洲源对太平洋西北地区清洁背景地区 PM2.5 的贡献平均为 1.7μg/m3(代表约 50-80%的 PM)。LRT PM 的影响也在城市和城市背景地区的测量站中可见。然而,由于城市地区的本地排放较大,LRT PM 的比例较低(PM 的 36-50%)。