TY - JOUR
T1 - The influence of short-lived halogens on atmospheric chemistry and climate
AU - Saiz-Lopez, Alfonso
AU - Mahajan, Anoop S.
AU - Abbatt, Jonathan
AU - Bobrowski, Nicole
AU - Brown, Steven S.
AU - Burrows, John P.
AU - Carpenter, Lucy J.
AU - Chipperfield, Martyn P.
AU - Cuevas, Carlos A.
AU - Fernandez, Rafael P.
AU - Hossaini, Ryan
AU - Kinnison, Douglas E.
AU - Lamarque, Jean Francois
AU - Finlayson-Pitts, Barbara J.
AU - Plane, John M.C.
AU - Platt, Ulrich
AU - Pratt, Kerri A.
AU - Ravishankara, A. R.
AU - Salawitch, Ross J.
AU - Saltzman, Eric S.
AU - Simpson, William R.
AU - Solomon, Susan
AU - Thornton, Joel A.
AU - Wang, Tao
N1 - Publisher Copyright:
© Springer Nature Limited 2025.
PY - 2025/12/11
Y1 - 2025/12/11
N2 - Observations have demonstrated the ubiquity of short-lived halogens (SLHs)—defined as organic and inorganic chlorine, bromine and iodine compounds with an overall atmospheric lifetime of less than 6 months—in the global atmosphere. They are primarily emitted naturally from the ocean, cryosphere, volcanoes, salt lakes and the biosphere. However, unregulated anthropogenic sources are increasingly contributing to their atmospheric loading. Some of their natural emissions have increased over time due to anthropogenic pollution, for example, the increased oceanic emissions of iodine compounds due to the deposition of ozone on the sea surface. SLHs affect chemical processes, such as ozone and methane chemistry, and therefore influence air quality and climate. Nevertheless, some of their sources and chemistry are not included in air-quality and climate models used in international assessment reports. Here we describe in detail the various impacts of SLHs on air quality and climate, and make a case for the inclusion of more comprehensive SLH chemistry in future atmospheric, air-quality and climate assessments. In doing so, we also identify gaps in our knowledge of SLH emissions, chemistry, and environmental and climate impacts.
AB - Observations have demonstrated the ubiquity of short-lived halogens (SLHs)—defined as organic and inorganic chlorine, bromine and iodine compounds with an overall atmospheric lifetime of less than 6 months—in the global atmosphere. They are primarily emitted naturally from the ocean, cryosphere, volcanoes, salt lakes and the biosphere. However, unregulated anthropogenic sources are increasingly contributing to their atmospheric loading. Some of their natural emissions have increased over time due to anthropogenic pollution, for example, the increased oceanic emissions of iodine compounds due to the deposition of ozone on the sea surface. SLHs affect chemical processes, such as ozone and methane chemistry, and therefore influence air quality and climate. Nevertheless, some of their sources and chemistry are not included in air-quality and climate models used in international assessment reports. Here we describe in detail the various impacts of SLHs on air quality and climate, and make a case for the inclusion of more comprehensive SLH chemistry in future atmospheric, air-quality and climate assessments. In doing so, we also identify gaps in our knowledge of SLH emissions, chemistry, and environmental and climate impacts.
UR - https://www.scopus.com/pages/publications/105024357841
U2 - 10.1038/s41586-025-09753-x
DO - 10.1038/s41586-025-09753-x
M3 - Review article
C2 - 41372640
AN - SCOPUS:105024357841
SN - 0028-0836
VL - 648
SP - 289
EP - 299
JO - Nature
JF - Nature
IS - 8093
ER -