Anthropogenic Bromoform at the Extratropical Tropopause

Author:

Jia Yue12,Hahn Josefine34ORCID,Quack Birgit3,Jones Edward5ORCID,Brehon Meghan1,Tegtmeier Susann1ORCID

Affiliation:

1. Institute of Space and Atmospheric Studies University of Saskatchewan Saskatoon SK Canada

2. Now at Cooperative Institute for Research in Environmental Sciences (CIRES) University of Colorado Boulder Boulder CO USA

3. GEOMAR Helmholtz Centre for Ocean Research Kiel Kiel Germany

4. Now at Helmholtz‐Zentrum Hereon GmbH Institute of Coastal Environmental Chemistry Geesthacht Germany

5. Department of Physical Geography Utrecht University Utrecht The Netherlands

Abstract

AbstractBromoform (CHBr3) contributes to stratospheric ozone depletion but is not regulated under the Montreal Protocol due to its short lifetime and large natural sources. Here, we show that anthropogenic sources contribute significantly to the amount of CHBr3 transported into the Northern Hemisphere (NH) extratropical stratosphere. We present a new CHBr3 emission inventory comprised of natural and anthropogenic sources, with the latter estimated from ship ballast, power plant cooling and desalination plant brine water. Including anthropogenic sources in the new inventory increases CHBr3 emissions by up to 31.5% globally and 70.5% in the NH. In consequence, atmospheric CHBr3 is also significantly higher, especially over the NH extratropics during boreal winter. Here anthropogenic sources enhance bromine at the tropopause by 0.9 ppt Br, thus doubling natural CHBr3 abundances. For some latitudes, tropopause bromine increases by 2.4 ppt Br suggesting significant contributions of anthropogenic CHBr3 to the NH lowermost stratosphere.

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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