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Aerosol hygroscopicity and CCN activation kinetics in a boreal forest environment during the 2007 EUCAARI campaign

机译:2007年Eucaari活动期间,气溶胶吸湿性和CCN激活动力学在北方林环境中

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Measurements of size-resolved cloud condensation nuclei (CCN) concentrations, subsaturated hygroscopic growth, size distribution, and chemical composition were collected from March through May, 2007, in the remote Boreal forests of Hyyti?l?, Finland, as part of the European Integrated project on Aerosol Cloud Climate and Air Quality Interactions (EUCAARI) campaign. Hygroscopicity parameter, , distributions were derived independently from Continuous Flow-Streamwise Thermal Gradient CCN Chamber (CFSTGC) and Hygroscopicity Tandem Differential Mobility Analyzer (HTDMA) measurements. CFSTGC-derived values for 40, 60, and 80 nm particles range mostly between 0.10 and 0.40 with an average characteristic of highly oxidized organics of 0.20 ± 0.10, indicating that organics play a dominant role for this environment. HTDMA-derived were generally 30% lower. Diurnal trends of show a minimum at sunrise and a maximum in the late afternoon; this trend covaries with inorganic mass fraction and the m/z 44 organic mass fraction given by a quadrupole aerosol mass spectrometer, further illustrating the importance of organics in aerosol hygroscopicity. The chemical dispersion inferred from the observed distributions indicates that while 60 and 80 nm dispersion increases around midday, 40 nm dispersion remains constant. Additionally, 80 nm particles show a markedly higher level of chemical dispersion than both 40 and 60 nm particles. An analysis of droplet activation kinetics for the sizes considered indicates that most of the CCN activate as rapidly as (NH4)2SO4 calibration aerosol.
机译:从3月至2007年5月,在3月至2007年5月,在Hyyti?,芬兰的远程北部森林中,从2007年5月收集了尺寸分辨云凝聚核(CCN)浓度,子饱和吸湿生长,尺寸分布和化学成分。综合项目气溶胶云气候和空气质量互动(Eucaari)竞选活动。吸湿性参数,分布是由连续流动流动热梯度CCN腔室(CFSTGC)和吸湿性串联差分移动分析器(HTDMA)测量导出的分布。 40,60和80nm颗粒的CFSTGC衍生值主要在0.10和0.40之间,平均特征的高度氧化有机体为0.20±0.10,表明有机物对这种环境发挥着主导作用。 HTDMA衍生的一般均降低30%。日出时显示最低日出的昼夜趋势和最大的趋势;这种趋势具有无机质量分数的调节和由四极气溶胶质谱仪给出的无机质量分数和M / Z 44有机质量分数,进一步说明了有机物在气溶胶吸湿性中的重要性。从观察到的分布推断的化学分散表明,虽然60和80nm分散在中午左右增加,但是40nm分散体保持恒定。另外,80nm颗粒显示出比40和60nm颗粒的显着更高水平的化学分散体。液滴激活动力学对所考虑的液滴激活动力学,表明大部分CCN激活如(NH4)2SO4校准气溶胶。

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