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  Long-term cloud condensation nuclei number concentration, particle number size distribution and chemical composition measurements at regionally representative observatories

Schmale, J., Henning, S., Decesari, S., Henzing, B., Keskinen, H., Sellegri, K., Ovadnevaite, J., Pöhlker, M. L., Brito, J., Bougiatioti, A., Kristensson, A., Kalivitis, N., Stavroulas, I., Carbone, S., Jefferson, A., Park, M., Schlag, P., Iwamoto, Y., Aalto, P., Aijala, M., Bukowiecki, N., Ehn, M., Frank, G., Frohlich, R., Frumau, A., Herrmann, E., Herrmann, H., Holzinger, R., Kos, G., Kulmala, M., Mihalopoulos, N., Nenes, A., O'Dowd, C., Petaja, T., Picard, D., Pöhlker, C., Pöschl, U., Poulain, L., Prevot, A. S. H., Swietlicki, E., Andreae, M. O., Artaxo, P., Wiedensohler, A., Ogren, J., Matsuki, A., Yum, S. S., Stratmann, F., Baltensperger, U., & Gysel, M. (2018). Long-term cloud condensation nuclei number concentration, particle number size distribution and chemical composition measurements at regionally representative observatories. Atmospheric Chemistry and Physics, 18(4), 2853-2881. doi:10.5194/acp-18-2853-2018.

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アイテムのパーマリンク: https://hdl.handle.net/21.11116/0000-0001-A8D2-4 版のパーマリンク: https://hdl.handle.net/21.11116/0000-0001-A8D3-3
資料種別: 学術論文

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作成者

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 作成者:
Schmale, Julia1, 著者
Henning, Silvia1, 著者
Decesari, Stefano1, 著者
Henzing, Bas1, 著者
Keskinen, Helmi1, 著者
Sellegri, Karine1, 著者
Ovadnevaite, Jurgita1, 著者
Pöhlker, Mira L.2, 著者           
Brito, Joel1, 著者
Bougiatioti, Aikaterini1, 著者
Kristensson, Adam1, 著者
Kalivitis, Nikos1, 著者
Stavroulas, Iasonas1, 著者
Carbone, Samara1, 著者
Jefferson, Anne1, 著者
Park, Minsu1, 著者
Schlag, Patrick1, 著者
Iwamoto, Yoko1, 著者
Aalto, Pasi1, 著者
Aijala, Mikko1, 著者
Bukowiecki, Nicolas1, 著者Ehn, Mikael1, 著者Frank, Goran1, 著者Frohlich, Roman1, 著者Frumau, Arnoud1, 著者Herrmann, Erik1, 著者Herrmann, Hartmut1, 著者Holzinger, Rupert1, 著者Kos, Gerard1, 著者Kulmala, Markku1, 著者Mihalopoulos, Nikolaos1, 著者Nenes, Athanasios1, 著者O'Dowd, Colin1, 著者Petaja, Tuukka1, 著者Picard, David1, 著者Pöhlker, Christopher2, 著者           Pöschl, Ulrich2, 著者           Poulain, Laurent1, 著者Prevot, Andre Stephan Henry1, 著者Swietlicki, Erik1, 著者Andreae, Meinrat O.3, 著者           Artaxo, Paulo1, 著者Wiedensohler, Alfred1, 著者Ogren, John1, 著者Matsuki, Atsushi1, 著者Yum, Seong Soo1, 著者Stratmann, Frank1, 著者Baltensperger, Urs1, 著者Gysel, Martin1, 著者 全て表示
所属:
1external, ou_persistent22              
2Multiphase Chemistry, Max Planck Institute for Chemistry, Max Planck Society, ou_1826290              
3Biogeochemistry, Max Planck Institute for Chemistry, Max Planck Society, ou_1826286              

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 要旨: Aerosol–cloud interactions (ACI) constitute the single largest uncertainty in anthropogenic radiative forcing. To reduce the uncertainties and gain more confidence in the simulation of ACI, models need to be evaluated against observations, in particular against measurements of cloud condensation nuclei (CCN). Here we present a data set – ready to be used for model validation – of long-term observations of CCN number concentrations, particle number size distributions and chemical composition from 12 sites on 3 continents. Studied environments include coastal background, rural background, alpine sites, remote forests and an urban surrounding. Expectedly, CCN characteristics are highly variable across site categories. However, they also vary within them, most strongly in the coastal background group, where CCN number concentrations can vary by up to a factor of 30 within one season. In terms of particle activation behaviour, most continental stations exhibit very similar activation ratios (relative to particles >20nm) across the range of 0.1 to 1.0% supersaturation. At the coastal sites the transition from particles being CCN inactive to becoming CCN active occurs over a wider range of the supersaturation spectrum. Several stations show strong seasonal cycles of CCN number concentrations and particle number size distributions, e.g. at Barrow (Arctic haze in spring), at the alpine stations (stronger influence of polluted boundary layer air masses in summer), the rain forest (wet and dry season) or Finokalia (wildfire influence in autumn). The rural background and urban sites exhibit relatively little variability throughout the year, while short-term variability can be high especially at the urban site. The average hygroscopicity parameter, κ, calculated from the chemical composition of submicron particles was highest at the coastal site of Mace Head (0.6) and lowest at the rain forest station ATTO (0.2–0.3). We performed closure studies based on κ–Köhler theory to predict CCN number concentrations. The ratio of predicted to measured CCN concentrations is between 0.87 and 1.4 for five different types of κ. The temporal variability is also well captured, with Pearson correlation coefficients exceeding 0.87. Information on CCN number concentrations at many locations is important to better characterise ACI and their radiative forcing. But long-term comprehensive aerosol particle characterisations are labour intensive and costly. Hence, we recommend operating "migrating-CCNCs" to conduct collocated CCN number concentration and particle number size distribution measurements at individual locations throughout one year at least to derive a seasonally resolved hygroscopicity parameter. This way, CCN number concentrations can only be calculated based on continued particle number size distribution information and greater spatial coverage of long-term measurements can be achieved.

資料詳細

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 日付: 2018
 出版の状態: 出版
 ページ: -
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 識別子(DOI, ISBNなど): ISI: 000426312200002
DOI: 10.5194/acp-18-2853-2018
 学位: -

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出版物 1

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出版物名: Atmospheric Chemistry and Physics
  省略形 : ACP
種別: 学術雑誌
 著者・編者:
所属:
出版社, 出版地: Göttingen : Copernicus Publications
ページ: - 巻号: 18 (4) 通巻号: - 開始・終了ページ: 2853 - 2881 識別子(ISBN, ISSN, DOIなど): ISSN: 1680-7316
CoNE: https://pure.mpg.de/cone/journals/resource/111030403014016