The isotopic record of Northern Hemisphere atmospheric carbon monoxide since 1950: implications for the CO budget

We present a 60-year record of the stable isotopes of atmospheric carbon monoxide (CO) from firn air samples collected under the framework of the North Greenland Eemian Ice Drilling (NEEM) project. CO concentration, δ<sup>13</sup>C, and δ&l...

Full description

Bibliographic Details
Published in:Atmospheric Chemistry and Physics
Main Authors: Z. Wang, J. Chappellaz, P. Martinerie, K. Park, V. Petrenko, E. Witrant, L. K. Emmons, T. Blunier, C. A. M. Brenninkmeijer, J. E. Mak
Format: Article
Language:English
Published: Copernicus Publications 2012-05-01
Online Access:http://www.atmos-chem-phys.net/12/4365/2012/acp-12-4365-2012.pdf
_version_ 1851881367998038016
author Z. Wang
J. Chappellaz
P. Martinerie
K. Park
V. Petrenko
E. Witrant
L. K. Emmons
T. Blunier
C. A. M. Brenninkmeijer
J. E. Mak
author_facet Z. Wang
J. Chappellaz
P. Martinerie
K. Park
V. Petrenko
E. Witrant
L. K. Emmons
T. Blunier
C. A. M. Brenninkmeijer
J. E. Mak
author_sort Z. Wang
collection DOAJ
container_title Atmospheric Chemistry and Physics
description We present a 60-year record of the stable isotopes of atmospheric carbon monoxide (CO) from firn air samples collected under the framework of the North Greenland Eemian Ice Drilling (NEEM) project. CO concentration, δ<sup>13</sup>C, and δ<sup>18</sup>O of CO were measured by gas chromatography/isotope ratio mass spectrometry (gc-IRMS) from trapped gases in the firn. We applied LGGE-GIPSA firn air models (Witrant et al., 2011) to correlate gas age with firn air depth and then reconstructed the trend of atmospheric CO and its stable isotopic composition at high northern latitudes since 1950. The most probable firn air model scenarios show that δ<sup>13</sup>C decreased slightly from −25.8‰ in 1950 to −26.4‰ in 2000, then decreased more significantly to −27.2‰ in 2008. δ<sup>18</sup>O decreased more regularly from 9.8‰ in 1950 to 7.1‰ in 2008. Those same scenarios show CO concentration increased gradually from 1950 and peaked in the late 1970s, followed by a gradual decrease to present day values (Petrenko et al., 2012). Results from an isotope mass balance model indicate that a slight increase, followed by a large reduction, in CO derived from fossil fuel combustion has occurred since 1950. The reduction of CO emission from fossil fuel combustion after the mid-1970s is the most plausible mechanism for the drop of CO concentration during this time. Fossil fuel CO emissions decreased as a result of the implementation of catalytic converters and the relative growth of diesel engines, in spite of the global vehicle fleet size having grown several fold over the same time period.
format Article
id doaj-art-e495c2f8a66947ca98cfafb6f831c734
institution Directory of Open Access Journals
issn 1680-7316
1680-7324
language English
publishDate 2012-05-01
publisher Copernicus Publications
record_format Article
spelling doaj-art-e495c2f8a66947ca98cfafb6f831c7342025-08-19T22:13:08ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242012-05-0112104365437710.5194/acp-12-4365-2012The isotopic record of Northern Hemisphere atmospheric carbon monoxide since 1950: implications for the CO budgetZ. WangJ. ChappellazP. MartinerieK. ParkV. PetrenkoE. WitrantL. K. EmmonsT. BlunierC. A. M. BrenninkmeijerJ. E. MakWe present a 60-year record of the stable isotopes of atmospheric carbon monoxide (CO) from firn air samples collected under the framework of the North Greenland Eemian Ice Drilling (NEEM) project. CO concentration, δ<sup>13</sup>C, and δ<sup>18</sup>O of CO were measured by gas chromatography/isotope ratio mass spectrometry (gc-IRMS) from trapped gases in the firn. We applied LGGE-GIPSA firn air models (Witrant et al., 2011) to correlate gas age with firn air depth and then reconstructed the trend of atmospheric CO and its stable isotopic composition at high northern latitudes since 1950. The most probable firn air model scenarios show that δ<sup>13</sup>C decreased slightly from −25.8‰ in 1950 to −26.4‰ in 2000, then decreased more significantly to −27.2‰ in 2008. δ<sup>18</sup>O decreased more regularly from 9.8‰ in 1950 to 7.1‰ in 2008. Those same scenarios show CO concentration increased gradually from 1950 and peaked in the late 1970s, followed by a gradual decrease to present day values (Petrenko et al., 2012). Results from an isotope mass balance model indicate that a slight increase, followed by a large reduction, in CO derived from fossil fuel combustion has occurred since 1950. The reduction of CO emission from fossil fuel combustion after the mid-1970s is the most plausible mechanism for the drop of CO concentration during this time. Fossil fuel CO emissions decreased as a result of the implementation of catalytic converters and the relative growth of diesel engines, in spite of the global vehicle fleet size having grown several fold over the same time period.http://www.atmos-chem-phys.net/12/4365/2012/acp-12-4365-2012.pdf
spellingShingle Z. Wang
J. Chappellaz
P. Martinerie
K. Park
V. Petrenko
E. Witrant
L. K. Emmons
T. Blunier
C. A. M. Brenninkmeijer
J. E. Mak
The isotopic record of Northern Hemisphere atmospheric carbon monoxide since 1950: implications for the CO budget
title The isotopic record of Northern Hemisphere atmospheric carbon monoxide since 1950: implications for the CO budget
title_full The isotopic record of Northern Hemisphere atmospheric carbon monoxide since 1950: implications for the CO budget
title_fullStr The isotopic record of Northern Hemisphere atmospheric carbon monoxide since 1950: implications for the CO budget
title_full_unstemmed The isotopic record of Northern Hemisphere atmospheric carbon monoxide since 1950: implications for the CO budget
title_short The isotopic record of Northern Hemisphere atmospheric carbon monoxide since 1950: implications for the CO budget
title_sort isotopic record of northern hemisphere atmospheric carbon monoxide since 1950 implications for the co budget
url http://www.atmos-chem-phys.net/12/4365/2012/acp-12-4365-2012.pdf
work_keys_str_mv AT zwang theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT jchappellaz theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT pmartinerie theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT kpark theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT vpetrenko theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT ewitrant theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT lkemmons theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT tblunier theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT cambrenninkmeijer theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT jemak theisotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT zwang isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT jchappellaz isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT pmartinerie isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT kpark isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT vpetrenko isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT ewitrant isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT lkemmons isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT tblunier isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT cambrenninkmeijer isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget
AT jemak isotopicrecordofnorthernhemisphereatmosphericcarbonmonoxidesince1950implicationsforthecobudget