Hamish Struthers
Stockholm University
28 Papers
44 Citations
Hamish Struthers is an academic researcher from Stockholm University. The author has contributed to research in topics: Aerosol & Ozone depletion. The author has an hindex of 14, co-authored 28 publications. Previous affiliations of Hamish Struthers include Linköping University & National Institute of Water and Atmospheric Research.
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Papers
Amplification of Arctic warming by past air pollution reductions in Europe
J. C. Acosta Navarro,V. Varma,Ilona Riipinen,Øyvind Seland,Alf Kirkevåg,Hamish Struthers,Hamish Struthers,Trond Iversen,Hans-Christen Hansson,Annica M. L. Ekman +9 more
TL;DR: The Arctic region is warming considerably faster than the rest of the globe as discussed by the authors, with important consequences for the ecosystems and human exploration of the region, however, the reasons behind this phenomenon are unknown.
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The Tropical Tropopause Layer 1960–2100
Andrew Gettelman,Thomas Birner,Veronika Eyring,Hideharu Akiyoshi,Slimane Bekki,Christoph Brühl,Martin Dameris,Douglas E. Kinnison,Frank Lefevre,François Lott,Eva Mancini,Giovanni Pitari,David A. Plummer,Eugene Rozanov,Kiyotaka Shibata,Andrea Stenke,Hamish Struthers,W. Tian +17 more
TL;DR: The representation of the tropical Tropopause Layer (TTL) in 13 different Chemistry Climate Models (CCMs) designed to represent the stratosphere is analyzed in this article, showing that the tropopause anomalies are highly correlated with tropical surface temperature anomalies and ozone anomalies, less so with stratospheric temperature anomalies.
Global emissions of terpenoid VOCs from terrestrial vegetation in the last millennium
J. C. Acosta Navarro,Sampo Smolander,Hamish Struthers,E. Zorita,Annica M. L. Ekman,Jed O. Kaplan,Alex Guenther,Almut Arneth,Ilona Riipinen +8 more
TL;DR: The millennial trends of global isoprene emissions were found to be mostly affected by land cover and atmospheric carbon dioxide changes, whereas monoterpene and sesquiterpene emission trends were dominated by temperature change.
Northern winter stratospheric temperature and ozone responses to ENSO inferred from an ensemble of Chemistry Climate Models
Chiara Cagnazzo,Elisa Manzini,Natalia Calvo,Anne R. Douglass,Hideharu Akiyoshi,Slimane Bekki,Martyn P. Chipperfield,Martin Dameris,Makoto Deushi,A. M. Fischer,A. M. Fischer,Hella Garny,Andrew Gettelman,Marco Giorgetta,David A. Plummer,Eugene Rozanov,Theodore G. Shepherd,Kiyotaka Shibata,Andrea Stenke,Hamish Struthers,Hamish Struthers,W. Tian +21 more
TL;DR: In this paper, a systematic inter-comparison of the sensitivity of the modeled stratosphere to ENSO in Chemistry Climate Models (CCMs) is reported, using results from a number of the CCMs included in the 2006 ozone assessment.
The effectiveness of N2O in depleting stratospheric ozone
Laura E. Revell,Laura E. Revell,Greg Bodeker,Dan Smale,Ralph Lehmann,Petra E. Huck,Bryce E. Williamson,Eugene Rozanov,Hamish Struthers +8 more
TL;DR: In this article, the authors investigated the link between ozone and NOx emissions, and the effects of NOx on ozone in a changing climate, the evolution of stratospheric ozone from 1960 to 2100 was simulated using the NIWA-SOCOL chemistry-climate model.
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