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High summertime aerosol organic functional group concentrations from marine and seabird sources at Ross Island, Antarctica, during AWARE

机译:高夏季气溶胶有机官能团浓度从罗斯岛,南极洲的海洋和海鸟来源,意识到

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Observations of the organic components of the natural aerosol are scarce in Antarctica, which limits our understanding of natural aerosols and their connection to seasonal and spatial patterns of cloud albedo in the region. From November?2015 to December?2016, the ARM West Antarctic Radiation Experiment (AWARE) measured submicron aerosol properties near McMurdo Station at the southern tip of Ross Island. Submicron organic mass (OM), particle number, and cloud condensation nuclei concentrations were higher in summer than other seasons. The measurements included a range of compositions and concentrations that likely reflected both local anthropogenic emissions and natural background sources. We isolated the natural organic components by separating a natural factor and a local combustion factor. The natural OM was 150 times higher in summer than in winter. The local anthropogenic emissions were not hygroscopic and had little contribution to the CCN concentrations. Natural sources that included marine sea spray and seabird emissions contributed 56% OM in summer but only 3% in winter. The natural OM had high hydroxyl group fraction (55%), 6% alkane, and 6% amine group mass, consistent with marine organic composition. In addition, the Fourier transform infrared (FTIR) spectra showed the natural sources of organic aerosol were characterized by amide group absorption, which may be from seabird populations. Carboxylic acid group contributions were high in summer and associated with natural sources, likely forming by secondary reactions.
机译:天然气溶胶的有机成分的观察在南极洲稀缺,这限制了我们对天然气溶胶的理解及其与该地区云反照覆的季节性和空间模式的联系。从11月到2015年到12月?2016年,ARM西南极辐射实验(意识)在罗斯岛南端MCMURDO站附近的亚微米汽油特性。夏季亚微米有机物质(OM),粒子数和云凝结核浓度比其他季节更高。测量包括一系列的组合物和浓度,其可能反映了局部人为排放和自然背景来源。我们通过分离自然因子和局部燃烧因子来分离天然有机组分。夏天,自然OM比在冬天高150倍。局部人为的排放不吸湿,对CCN浓度几乎没有贡献。包括海上海浪和海鸟排放的自然来源在夏季贡献了56%OM,但冬季只有3%。天然OM具有高羟基级分(55%),6%烷烃和6%胺基团质量,与海洋有机组合物一致。此外,傅里叶变换红外(FTIR)光谱显示出有机气溶胶的自然来源,其特征在于酰胺群体吸收,这可能来自海鸟群。夏季羧酸组贡献高,与天然来源有关,可能由二次反应形成。

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