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  Global atmospheric particle formation from CERN CLOUD measurements

Dunne, E. M., Gordon, H., Kurten, A., Almeida, J., Duplissy, J., Williamson, C., Ortega, I. K., Pringle, K. J., Adamov, A., Baltensperger, U., Barmet, P., Benduhn, F., Bianchi, F., Breitenlechner, M., Clarke, A., Curtius, J., Dommen, J., Donahue, N. M., Ehrhart, S., Flagan, R. C., Franchin, A., Guida, R., Hakala, J., Hansel, A., Heinritzi, M., Jokinen, T., Kangasluoma, J., Kirkby, J., Kulmala, M., Kupc, A., Lawler, M. J., Lehtipalo, K., Makhmutov, V., Mann, G., Mathot, S., Merikanto, J., Miettinen, P., Nenes, A., Onnela, A., Rap, A., Reddington, C. L. S., Riccobono, F., Richards, N. A. D., Rissanen, M. P., Rondo, L., Sarnela, N., Schobesberger, S., Sengupta, K., Simon, M., Sipila, M., Smith, J. N., Stozkhov, Y., Tome, A., Trostl, J., Wagner, P. E., Wimmer, D., Winkler, P. M., Worsnop, D. R., Carslaw, K. S. (2016): Global atmospheric particle formation from CERN CLOUD measurements. - Science, 354, 6316, 1119-1124.
https://doi.org/10.1126/science.aaf2649

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 Creators:
Dunne, E. M.1, Author
Gordon, H.1, Author
Kurten, A.1, Author
Almeida, J.1, Author
Duplissy, J.1, Author
Williamson, C.1, Author
Ortega, I. K.1, Author
Pringle, K. J.1, Author
Adamov, A.1, Author
Baltensperger, U.1, Author
Barmet, P.1, Author
Benduhn, François2, Author              
Bianchi, F.1, Author
Breitenlechner, M.1, Author
Clarke, A.1, Author
Curtius, J.1, Author
Dommen, J.1, Author
Donahue, N. M.1, Author
Ehrhart, S.1, Author
Flagan, R. C.1, Author
Franchin, A.1, AuthorGuida, R.1, AuthorHakala, J.1, AuthorHansel, A.1, AuthorHeinritzi, M.1, AuthorJokinen, T.1, AuthorKangasluoma, J.1, AuthorKirkby, J.1, AuthorKulmala, M.1, AuthorKupc, A.1, AuthorLawler, M. J.1, AuthorLehtipalo, K.1, AuthorMakhmutov, V.1, AuthorMann, G.1, AuthorMathot, S.1, AuthorMerikanto, J.1, AuthorMiettinen, P.1, AuthorNenes, A.1, AuthorOnnela, A.1, AuthorRap, A.1, AuthorReddington, C. L. S.1, AuthorRiccobono, F.1, AuthorRichards, N. A. D.1, AuthorRissanen, M. P.1, AuthorRondo, L.1, AuthorSarnela, N.1, AuthorSchobesberger, S.1, AuthorSengupta, K.1, AuthorSimon, M.1, AuthorSipila, M.1, AuthorSmith, J. N.1, AuthorStozkhov, Y.1, AuthorTome, A.1, AuthorTrostl, J.1, AuthorWagner, P. E.1, AuthorWimmer, D.1, AuthorWinkler, P. M.1, AuthorWorsnop, D. R.1, AuthorCarslaw, K. S.1, Author more..
Affiliations:
1External Organizations, ou_persistent22              
2IASS Institute for Advanced Sustainability Studies Potsdam, ou_96022              

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 Abstract: Fundamental questions remain about the origin of newly formed atmospheric aerosol particles because data from laboratory measurements have been insufficient to build global models. In contrast, gas-phase chemistry models have been based on laboratory kinetics measurements for decades. Here we build a global model of aerosol formation using extensive laboratory-measured nucleation rates involving sulfuric acid, ammonia, ions and organic compounds. The simulations and a comparison with atmospheric observations show that nearly all nucleation throughout the present-day atmosphere involves ammonia or biogenic organic compounds in addition to sulfuric acid. A significant fraction of nucleation involves ions, but the relatively weak dependence on ion concentrations indicates that for the processes studied variations in cosmic ray intensity do not significantly affect climate via nucleation in the present-day atmosphere. © 2016 American Association for the Advancement of Science.

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Language(s): eng - English
 Dates: 2016-122016
 Publication Status: Finally published
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Title: Science
Source Genre: Journal, E14, SCI, Scopus
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Pages: - Volume / Issue: 354 (6316) Sequence Number: - Start / End Page: 1119 - 1124 Identifier: CoNE: https://publications.rifs-potsdam.de/cone/journals/resource/journals29