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Direct field evidence of autocatalytic iodine release from atmospheric aerosol

  • Yee Jun Tham
  • , Xu Cheng He
  • , Qinyi Li
  • , Carlos A. Cuevas
  • , Jiali Shen
  • , Joni Kalliokoski
  • , Chao Yan
  • , Siddharth Iyer
  • , Tuuli Lehmusjärvi
  • , Sehyun Jang
  • , Roseline C. Thakur
  • , Lisa Beck
  • , Deniz Kemppainen
  • , Miska Olin
  • , Nina Sarnela
  • , Jyri Mikkilä
  • , Jani Hakala
  • , Marjan Marbouti
  • , Lei Yao
  • , Haiyan Li
  • Wei Huang, Yonghong Wang, Daniela Wimmer, Qiaozhi Zha, Juhani Virkanen, T. Gerard Spain, Simon O’Doherty, Tuija Jokinen, Federico Bianchi, Tuukka Petäjä, Douglas R. Worsnop, Roy L. Mauldin, Jurgita Ovadnevaite, Darius Ceburnis, Norbert M. Maier, Markku Kulmala, Colin O’Dowd, Miikka Dal Maso, Alfonso Saiz-Lopez, Mikko Sipilä
  • University of Helsinki
  • Spanish National Research Council (CSIC)
  • University of Tampere
  • Pohang University of Science and Technology
  • Karsa Ltd.
  • University of Bristol
  • Aerodyne Research, Inc.
  • Beijing University of Chemical Technology
  • Nanjing University

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

50 Citations (Scopus)

Abstract

Reactive iodine plays a key role in determining the oxidation capacity, or cleansing capacity, of the atmosphere in addition to being implicated in the formation of new particles in the marine boundary layer. The postulation that heterogeneous cycling of reactive iodine on aerosols may significantly influence the lifetime of ozone in the troposphere not only remains poorly understood but also heretofore has never been observed or quantified in the field. Here, we report direct ambient observations of hypoiodous acid (HOI) and heterogeneous recycling of interhalogen product species (i.e., iodine monochloride [ICl] and iodine monobromide [IBr]) in a midlatitude coastal environment. Significant levels of ICl and IBr with mean daily maxima of 4.3 and 3.0 parts per trillion by volume (1-min average), respectively, have been observed throughout the campaign. We show that the heterogeneous reaction of HOI on marine aerosol and subsequent production of iodine interhalogens are much faster than previously thought. These results indicate that the fast formation of iodine interhalogens, together with their rapid photolysis, results in more efficient recycling of atomic iodine than currently considered in models. Photolysis of the observed ICl and IBr leads to a 32% increase in the daytime average of atomic iodine production rate, thereby enhancing the average daytime iodine-catalyzed ozone loss rate by 10 to 20%. Our findings provide direct field evidence that the autocatalytic mechanism of iodine release from marine aerosol is important in the atmosphere and can have significant impacts on atmospheric oxidation capacity.

Original languageEnglish
Article numbere2009951118
JournalProceedings of the National Academy of Sciences of the United States of America
Volume118
Issue number4
DOIs
Publication statusPublished - 26 Jan 2021

Keywords

  • Halogen recycling
  • Heterogeneous reaction
  • Iodine
  • Ozone loss

Authors (Note for portal: view the doc link for the full list of authors)

  • Authors
  • Tham, Yee Jun and He, Xu-Cheng and Li, Qinyi and Cuevas, Carlos A. and Shen, Jiali and Kalliokoski, Joni and Yan, Chao and Iyer, Siddharth and Lehmusjarvi, Tuuli and Jang, Sehyun and Thakur, Roseline C. and Beck, Lisa and Kemppainen, Deniz and Olin, Miska and Sarnela, Nina and Mikkila, Jyri and Hakala, Jani and Marbouti, Marjan and Yao, Lei and Li, Haiyan and Huang, Wei and Wang, Yonghong and Wimmer, Daniela and Zha, Qiaozhi and Virkanen, Juhani and Spain, T. Gerard and O'Doherty, Simon and Jokinen, Tuija and Bianchi, Federico and Petaja, Tuukka and Worsnop, Douglas R. and Mauldin, III, Roy L. and Ovadnevaite, Jurgita and Ceburnis, Darius and Maier, Norbert M. and Kulmala, Markku and O'Dowd, Colin and Dal Maso, Miikka and Saiz-Lopez, Alfonso and Sipila, Mikko

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