Clean air policies are key for successfully mitigating Arctic warming

A tighter integration of modeling frameworks for climate and air quality is urgently needed to assess the impacts of clean air policies on future Arctic and global climate. We combined a new model emulator and comprehensive emissions scenarios for air pollutants and greenhouse gases to assess climat...

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Published in:Communications Earth & Environment
Main Authors: von Salzen, K., Whaley, C.H., Anenberg, S.C., Van Dingenen, R., Klimont, Z., Flanner, M.G., Mahmood, R., Arnold, S.R., Beagley, S., Chien, R.-Y., Christensen, J.H., Eckhardt, S., Ekman, A.M.L., Evangeliou, N., Faluvegi, G., Fu, J.S., Gauss, M., Gong, W., Hjorth, J.L., Im, U., Krishnan, S., Kupiainen, K., Kühn, T., Langner, J., Law, K.S., Marelle, L., Olivié, D., Onishi, T., Oshima, N., Paunu, V.-V., Peng, Y., Plummer, D., Pozzoli, L., Rao, S., Raut, J.-C., Sand, M., Schmale, J., Sigmond, M., Thomas, M.A., Tsigaridis, K., Tsyro, S., Turnock, S.T., Wang, M., Winter, B.
Format: Article in Journal/Newspaper
Language:English
Published: 2022
Subjects:
Online Access:https://pure.iiasa.ac.at/id/eprint/18303/
https://doi.org/10.1038/s43247-022-00555-x
https://pure.iiasa.ac.at/id/eprint/18303/1/s43247-022-00555-x.pdf
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spelling ftiiasalaxendare:oai:pure.iiasa.ac.at:18303 2023-05-15T14:27:28+02:00 Clean air policies are key for successfully mitigating Arctic warming von Salzen, K. Whaley, C.H. Anenberg, S.C. Van Dingenen, R. Klimont, Z. Flanner, M.G. Mahmood, R. Arnold, S.R. Beagley, S. Chien, R.-Y. Christensen, J.H. Eckhardt, S. Ekman, A.M.L. Evangeliou, N. Faluvegi, G. Fu, J.S. Gauss, M. Gong, W. Hjorth, J.L. Im, U. Krishnan, S. Kupiainen, K. Kühn, T. Langner, J. Law, K.S. Marelle, L. Olivié, D. Onishi, T. Oshima, N. Paunu, V.-V. Peng, Y. Plummer, D. Pozzoli, L. Rao, S. Raut, J.-C. Sand, M. Schmale, J. Sigmond, M. Thomas, M.A. Tsigaridis, K. Tsyro, S. Turnock, S.T. Wang, M. Winter, B. 2022-12 text https://pure.iiasa.ac.at/id/eprint/18303/ https://doi.org/10.1038/s43247-022-00555-x https://pure.iiasa.ac.at/id/eprint/18303/1/s43247-022-00555-x.pdf en eng https://pure.iiasa.ac.at/id/eprint/18303/1/s43247-022-00555-x.pdf von Salzen, K., Whaley, C.H., Anenberg, S.C., Van Dingenen, R., Klimont, Z. <https://pure.iiasa.ac.at/view/iiasa/159.html> orcid:0000-0003-2630-198X , Flanner, M.G., Mahmood, R., Arnold, S.R., et al. (2022). Clean air policies are key for successfully mitigating Arctic warming. Communications Earth & Environment 3 (1) e222. 10.1038/s43247-022-00555-x <https://doi.org/10.1038/s43247-022-00555-x>. doi:10.1038/s43247-022-00555-x cc_by_4 CC-BY Article PeerReviewed 2022 ftiiasalaxendare https://doi.org/10.1038/s43247-022-00555-x 2022-10-23T23:23:56Z A tighter integration of modeling frameworks for climate and air quality is urgently needed to assess the impacts of clean air policies on future Arctic and global climate. We combined a new model emulator and comprehensive emissions scenarios for air pollutants and greenhouse gases to assess climate and human health co-benefits of emissions reductions. Fossil fuel use is projected to rapidly decline in an increasingly sustainable world, resulting in far-reaching air quality benefits. Despite human health benefits, reductions in sulfur emissions in a more sustainable world could enhance Arctic warming by 0.8 °C in 2050 relative to the 1995–2014, thereby offsetting climate benefits of greenhouse gas reductions. Targeted and technically feasible emissions reduction opportunities exist for achieving simultaneous climate and human health co-benefits. It would be particularly beneficial to unlock a newly identified mitigation potential for carbon particulate matter, yielding Arctic climate benefits equivalent to those from carbon dioxide reductions by 2050. Article in Journal/Newspaper Arctic Arctic Human health IIASA DARE (Data Repository of the International Institute of Applied Systems Analysis) Arctic Communications Earth & Environment 3 1
institution Open Polar
collection IIASA DARE (Data Repository of the International Institute of Applied Systems Analysis)
op_collection_id ftiiasalaxendare
language English
description A tighter integration of modeling frameworks for climate and air quality is urgently needed to assess the impacts of clean air policies on future Arctic and global climate. We combined a new model emulator and comprehensive emissions scenarios for air pollutants and greenhouse gases to assess climate and human health co-benefits of emissions reductions. Fossil fuel use is projected to rapidly decline in an increasingly sustainable world, resulting in far-reaching air quality benefits. Despite human health benefits, reductions in sulfur emissions in a more sustainable world could enhance Arctic warming by 0.8 °C in 2050 relative to the 1995–2014, thereby offsetting climate benefits of greenhouse gas reductions. Targeted and technically feasible emissions reduction opportunities exist for achieving simultaneous climate and human health co-benefits. It would be particularly beneficial to unlock a newly identified mitigation potential for carbon particulate matter, yielding Arctic climate benefits equivalent to those from carbon dioxide reductions by 2050.
format Article in Journal/Newspaper
author von Salzen, K.
Whaley, C.H.
Anenberg, S.C.
Van Dingenen, R.
Klimont, Z.
Flanner, M.G.
Mahmood, R.
Arnold, S.R.
Beagley, S.
Chien, R.-Y.
Christensen, J.H.
Eckhardt, S.
Ekman, A.M.L.
Evangeliou, N.
Faluvegi, G.
Fu, J.S.
Gauss, M.
Gong, W.
Hjorth, J.L.
Im, U.
Krishnan, S.
Kupiainen, K.
Kühn, T.
Langner, J.
Law, K.S.
Marelle, L.
Olivié, D.
Onishi, T.
Oshima, N.
Paunu, V.-V.
Peng, Y.
Plummer, D.
Pozzoli, L.
Rao, S.
Raut, J.-C.
Sand, M.
Schmale, J.
Sigmond, M.
Thomas, M.A.
Tsigaridis, K.
Tsyro, S.
Turnock, S.T.
Wang, M.
Winter, B.
spellingShingle von Salzen, K.
Whaley, C.H.
Anenberg, S.C.
Van Dingenen, R.
Klimont, Z.
Flanner, M.G.
Mahmood, R.
Arnold, S.R.
Beagley, S.
Chien, R.-Y.
Christensen, J.H.
Eckhardt, S.
Ekman, A.M.L.
Evangeliou, N.
Faluvegi, G.
Fu, J.S.
Gauss, M.
Gong, W.
Hjorth, J.L.
Im, U.
Krishnan, S.
Kupiainen, K.
Kühn, T.
Langner, J.
Law, K.S.
Marelle, L.
Olivié, D.
Onishi, T.
Oshima, N.
Paunu, V.-V.
Peng, Y.
Plummer, D.
Pozzoli, L.
Rao, S.
Raut, J.-C.
Sand, M.
Schmale, J.
Sigmond, M.
Thomas, M.A.
Tsigaridis, K.
Tsyro, S.
Turnock, S.T.
Wang, M.
Winter, B.
Clean air policies are key for successfully mitigating Arctic warming
author_facet von Salzen, K.
Whaley, C.H.
Anenberg, S.C.
Van Dingenen, R.
Klimont, Z.
Flanner, M.G.
Mahmood, R.
Arnold, S.R.
Beagley, S.
Chien, R.-Y.
Christensen, J.H.
Eckhardt, S.
Ekman, A.M.L.
Evangeliou, N.
Faluvegi, G.
Fu, J.S.
Gauss, M.
Gong, W.
Hjorth, J.L.
Im, U.
Krishnan, S.
Kupiainen, K.
Kühn, T.
Langner, J.
Law, K.S.
Marelle, L.
Olivié, D.
Onishi, T.
Oshima, N.
Paunu, V.-V.
Peng, Y.
Plummer, D.
Pozzoli, L.
Rao, S.
Raut, J.-C.
Sand, M.
Schmale, J.
Sigmond, M.
Thomas, M.A.
Tsigaridis, K.
Tsyro, S.
Turnock, S.T.
Wang, M.
Winter, B.
author_sort von Salzen, K.
title Clean air policies are key for successfully mitigating Arctic warming
title_short Clean air policies are key for successfully mitigating Arctic warming
title_full Clean air policies are key for successfully mitigating Arctic warming
title_fullStr Clean air policies are key for successfully mitigating Arctic warming
title_full_unstemmed Clean air policies are key for successfully mitigating Arctic warming
title_sort clean air policies are key for successfully mitigating arctic warming
publishDate 2022
url https://pure.iiasa.ac.at/id/eprint/18303/
https://doi.org/10.1038/s43247-022-00555-x
https://pure.iiasa.ac.at/id/eprint/18303/1/s43247-022-00555-x.pdf
geographic Arctic
geographic_facet Arctic
genre Arctic
Arctic
Human health
genre_facet Arctic
Arctic
Human health
op_relation https://pure.iiasa.ac.at/id/eprint/18303/1/s43247-022-00555-x.pdf
von Salzen, K., Whaley, C.H., Anenberg, S.C., Van Dingenen, R., Klimont, Z. <https://pure.iiasa.ac.at/view/iiasa/159.html> orcid:0000-0003-2630-198X , Flanner, M.G., Mahmood, R., Arnold, S.R., et al. (2022). Clean air policies are key for successfully mitigating Arctic warming. Communications Earth & Environment 3 (1) e222. 10.1038/s43247-022-00555-x <https://doi.org/10.1038/s43247-022-00555-x>.
doi:10.1038/s43247-022-00555-x
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