Gas-phase photolysis of Hg(I) radical species: A new atmospheric mercury reduction process

The efficient gas-phase photoreduction of Hg(II) has recently been shown to change mercury cycling significantly in the atmosphere and its deposition to the Earth's surface. However, the photolysis of key Hg(I) species within that cycle is currently not considered. Here we present ultraviolet-visible absorption spectra and cross-sections of HgCl, HgBr, HgI, and HgOH radicals, computed by high-level quantum chemical methods, and show for the first time that gas phase Hg(I) photoreduction can occur at time scales that eventually would influence the mercury chemistry in the atmosphere. These results provide new fundamental understanding of the photobehavior of Hg(I) radicals and show that the photolysis of HgBr increases atmospheric mercury lifetime, contributing to its global distribution in a significant way.

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Copyright 2019 American Chemical Society.


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Author Saiz-Lopez, Alfonso
Acuña, A. Ulises
Trabelsi, Tarek
Carmona-García, Javier
Dávalos, Juan Z.
Rivero, Daniel
Cuevas, Carlos A.
Kinnison, Douglas E.
Sitkiewicz, Sebastian P.
Roca-Sanjuán, Daniel
Francisco, Joseph S.
Publisher UCAR/NCAR - Library
Publication Date 2019-06-05T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Topic Category geoscientificInformation
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Metadata Date 2023-08-18T19:20:19.490646
Metadata Record Identifier edu.ucar.opensky::articles:22583
Metadata Language eng; USA
Suggested Citation Saiz-Lopez, Alfonso, Acuña, A. Ulises, Trabelsi, Tarek, Carmona-García, Javier, Dávalos, Juan Z., Rivero, Daniel, Cuevas, Carlos A., Kinnison, Douglas E., Sitkiewicz, Sebastian P., Roca-Sanjuán, Daniel, Francisco, Joseph S.. (2019). Gas-phase photolysis of Hg(I) radical species: A new atmospheric mercury reduction process. UCAR/NCAR - Library. http://n2t.net/ark:/85065/d7rn3c06. Accessed 26 June 2025.

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