Photoreduction of gaseous oxidized mercury changes global atmospheric mercury speciation, transport and deposition

Reduction of gaseous Hg(II) compounds drives atmospheric mercury wet and dry deposition to Earth surface ecosystems. Global Hg models assume this reduction takes place in clouds. Here the authors report a new gas-phase Hg photochemical mechanism that changes atmospheric mercury lifetime and its depo...

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Autores principales: Alfonso Saiz-Lopez, Sebastian P. Sitkiewicz, Daniel Roca-Sanjuán, Josep M. Oliva-Enrich, Juan Z. Dávalos, Rafael Notario, Martin Jiskra, Yang Xu, Feiyue Wang, Colin P. Thackray, Elsie M. Sunderland, Daniel J. Jacob, Oleg Travnikov, Carlos A. Cuevas, A. Ulises Acuña, Daniel Rivero, John M. C. Plane, Douglas E. Kinnison, Jeroen E. Sonke
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/eae85893d2da4cf39b5be44bd3083594
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spelling oai:doaj.org-article:eae85893d2da4cf39b5be44bd30835942021-12-02T15:34:45ZPhotoreduction of gaseous oxidized mercury changes global atmospheric mercury speciation, transport and deposition10.1038/s41467-018-07075-32041-1723https://doaj.org/article/eae85893d2da4cf39b5be44bd30835942018-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07075-3https://doaj.org/toc/2041-1723Reduction of gaseous Hg(II) compounds drives atmospheric mercury wet and dry deposition to Earth surface ecosystems. Global Hg models assume this reduction takes place in clouds. Here the authors report a new gas-phase Hg photochemical mechanism that changes atmospheric mercury lifetime and its deposition to the surface.Alfonso Saiz-LopezSebastian P. SitkiewiczDaniel Roca-SanjuánJosep M. Oliva-EnrichJuan Z. DávalosRafael NotarioMartin JiskraYang XuFeiyue WangColin P. ThackrayElsie M. SunderlandDaniel J. JacobOleg TravnikovCarlos A. CuevasA. Ulises AcuñaDaniel RiveroJohn M. C. PlaneDouglas E. KinnisonJeroen E. SonkeNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-9 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Alfonso Saiz-Lopez
Sebastian P. Sitkiewicz
Daniel Roca-Sanjuán
Josep M. Oliva-Enrich
Juan Z. Dávalos
Rafael Notario
Martin Jiskra
Yang Xu
Feiyue Wang
Colin P. Thackray
Elsie M. Sunderland
Daniel J. Jacob
Oleg Travnikov
Carlos A. Cuevas
A. Ulises Acuña
Daniel Rivero
John M. C. Plane
Douglas E. Kinnison
Jeroen E. Sonke
Photoreduction of gaseous oxidized mercury changes global atmospheric mercury speciation, transport and deposition
description Reduction of gaseous Hg(II) compounds drives atmospheric mercury wet and dry deposition to Earth surface ecosystems. Global Hg models assume this reduction takes place in clouds. Here the authors report a new gas-phase Hg photochemical mechanism that changes atmospheric mercury lifetime and its deposition to the surface.
format article
author Alfonso Saiz-Lopez
Sebastian P. Sitkiewicz
Daniel Roca-Sanjuán
Josep M. Oliva-Enrich
Juan Z. Dávalos
Rafael Notario
Martin Jiskra
Yang Xu
Feiyue Wang
Colin P. Thackray
Elsie M. Sunderland
Daniel J. Jacob
Oleg Travnikov
Carlos A. Cuevas
A. Ulises Acuña
Daniel Rivero
John M. C. Plane
Douglas E. Kinnison
Jeroen E. Sonke
author_facet Alfonso Saiz-Lopez
Sebastian P. Sitkiewicz
Daniel Roca-Sanjuán
Josep M. Oliva-Enrich
Juan Z. Dávalos
Rafael Notario
Martin Jiskra
Yang Xu
Feiyue Wang
Colin P. Thackray
Elsie M. Sunderland
Daniel J. Jacob
Oleg Travnikov
Carlos A. Cuevas
A. Ulises Acuña
Daniel Rivero
John M. C. Plane
Douglas E. Kinnison
Jeroen E. Sonke
author_sort Alfonso Saiz-Lopez
title Photoreduction of gaseous oxidized mercury changes global atmospheric mercury speciation, transport and deposition
title_short Photoreduction of gaseous oxidized mercury changes global atmospheric mercury speciation, transport and deposition
title_full Photoreduction of gaseous oxidized mercury changes global atmospheric mercury speciation, transport and deposition
title_fullStr Photoreduction of gaseous oxidized mercury changes global atmospheric mercury speciation, transport and deposition
title_full_unstemmed Photoreduction of gaseous oxidized mercury changes global atmospheric mercury speciation, transport and deposition
title_sort photoreduction of gaseous oxidized mercury changes global atmospheric mercury speciation, transport and deposition
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/eae85893d2da4cf39b5be44bd3083594
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