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    AuthorAllan, J. (1)
    Canagaratna, M. (1)
    Canonaco, F. (1)Carbone, S. (1)Crippa, M. (1)... View MoreSubjectanthropogenic emissions (1)atmospheric chemistry (1)chemical-composition (1)field study (1)high-resolution (1)... View MoreDate Issued
    2016 (1)
    TypeArticle (1)

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    Ubiquity of organic nitrates from nighttime chemistry in the european submicron aerosol 

    Kiendler-Scharr, A.; Mensah, A. A.; Friese, E.; Topping, D.; Nemitz, E.; Prevot, A. S. H.; Äijälä, M.; Allan, J.; Canonaco, F.; Canagaratna, M.; Carbone, S.; Crippa, M.; Dall Osto, M.; Day, D. A.; De Carlo, P.; Di Marco, C. F.; Elbern, H.; Eriksson, A.; Freney, E.; Hao, L.; Herrmann, H.; Hildebrandt, L.; Hillamo, R.; Jimenez, J. L.; Laaksonen, A.; McFiggans, G.; Mohr, C.; O'Dowd, C.; Otjes, R.; Ovadnevaite, J.; Pandis, S. N.; Poulain, L.; Schlag, P.; Sellegri, K.; Swietlicki, E.; Tiitta, P.; Vermeulen, A.; Wahner, A.; Worsnop, D.; Wu, H.-C. (Wiley-Blackwell, 2016-07-28)
    In the atmosphere nighttime removal of volatile organic compounds is initiated to a large extent by reaction with the nitrate radical (NO3) forming organic nitrates which partition between gas and particulate phase. Here ...
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