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Long-Term Size-Segregated Cloud Condensation Nuclei Counter (CCNc) Measurements in a Boreal Environment and the Implications for Aerosol-Cloud Interactions

机译:长期尺寸隔离云凝结核计数器(CCNC)在北方环境中测量以及气溶胶云相互作用的影响

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Ambient aerosol CCN and hygroscopic properties were measured with a size-segregated CCNc in a boreal environment of Southern Finland at the SMEAR II station since February 2009. The overall median critical diameter D_c for CCN activation is reported at 75 nm, exhibiting a clear maximum in February and a minimum in July. The overall median aerosol hygroscopicity parameter κ is reported at 0.22, indicating that ambient aerosol in Hyytiala is less hygroscopic than the global continental and European continental averages. It is, however, more hygroscopic than ambient aerosol in an Amazon rainforest, the European high alpine site or the mountainous forest. The low hygroscopicity in the boreal forest is attributed to a large organic fraction present in the aerosol mass comparative to other locations within Europe. Aerosol mass spectrometer (AMS) data were used to demonstrate a positive correlation between κ and sulphate and ammonia, and a negative correlation between κ and the organic mass fraction. No distinguishable effect of atmospheric new particle formation (NPF) on D_c and κ was observed. Ambient aerosol was found to be internally mixed in the summer, and externally mixed during the rest of the year.
机译:自2009年2月以来,用尺寸分离的CCNC测量环境气溶胶CCN和吸湿性的CCNC。CCN激活的整体中位数临界直径D_C在75纳米,表现出明显的最大值二月和7月最低限度。总中中值气溶胶吸湿性参数κ报告为0.22,表明Hyytiala的环境气溶胶比全球大陆和欧洲大陆平均值较少。然而,比亚马逊雨林,欧洲高山遗址或山区森林中的环境气溶胶更吸湿。北部森林中的低吸湿性归因于气溶胶质量中存在的大型有机分数与欧洲内部的其他地点相比。气溶胶质谱仪(AMS)数据用于证明κ和硫酸盐与氨之间的正相关,κ与有机质量分数之间的负相关性。没有观察到D_C和κ上的大气新颗粒形成(NPF)的可区分效果。发现环境气溶胶在夏季内部混合,并在今年剩下的时间内外部混合。

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