Isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at Kohnen station, East Antarctica

Quantifying the magnitude of post-depositional processes affecting the isotopic composition of surface snow is essential for a more accurate interpretation of ice core data. To achieve this, high temporal resolution measurements of both lower atmospheric water vapor and surface snow isotopic composi...

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Published in:The Cryosphere
Main Authors: F. Ritter, H. C. Steen-Larsen, M. Werner, V. Masson-Delmotte, A. Orsi, M. Behrens, G. Birnbaum, J. Freitag, C. Risi, S. Kipfstuhl
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2016
Subjects:
Online Access:https://doi.org/10.5194/tc-10-1647-2016
https://doaj.org/article/8565f850ea5a48278ab886e560542a34
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spelling ftdoajarticles:oai:doaj.org/article:8565f850ea5a48278ab886e560542a34 2023-05-15T14:03:10+02:00 Isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at Kohnen station, East Antarctica F. Ritter H. C. Steen-Larsen M. Werner V. Masson-Delmotte A. Orsi M. Behrens G. Birnbaum J. Freitag C. Risi S. Kipfstuhl 2016-07-01T00:00:00Z https://doi.org/10.5194/tc-10-1647-2016 https://doaj.org/article/8565f850ea5a48278ab886e560542a34 EN eng Copernicus Publications http://www.the-cryosphere.net/10/1647/2016/tc-10-1647-2016.pdf https://doaj.org/toc/1994-0416 https://doaj.org/toc/1994-0424 1994-0416 1994-0424 doi:10.5194/tc-10-1647-2016 https://doaj.org/article/8565f850ea5a48278ab886e560542a34 The Cryosphere, Vol 10, Iss 4, Pp 1647-1663 (2016) Environmental sciences GE1-350 Geology QE1-996.5 article 2016 ftdoajarticles https://doi.org/10.5194/tc-10-1647-2016 2022-12-31T04:48:50Z Quantifying the magnitude of post-depositional processes affecting the isotopic composition of surface snow is essential for a more accurate interpretation of ice core data. To achieve this, high temporal resolution measurements of both lower atmospheric water vapor and surface snow isotopic composition are required. This study presents continuous measurements of water vapor isotopes performed in East Antarctica (Kohnen station) from December 2013 to January 2014 using a laser spectrometer. Observations have been compared with the outputs of two atmospheric general circulation models (AGCMs) equipped with water vapor isotopes: ECHAM5-wiso and LMDZ5Aiso. During our monitoring period, the signals in the 2 m air temperature T , humidity mixing ratio q and both water vapor isotopes δ D and δ 18 O are dominated by the presence of diurnal cycles. Both AGCMs simulate similar diurnal cycles with a mean amplitude 30 to 70 % lower than observed, possibly due to an incorrect simulation of the surface energy balance and the boundary layer dynamics. In parallel, snow surface samples were collected each hour over 35 h, with a sampling depth of 2–5 mm. A diurnal cycle in the isotopic composition of the snow surface is observed in phase with the water vapor, reaching a peak-to-peak amplitude of 3 ‰ for δ D over 24 h (compared to 36 ‰ for δ D in the water vapor). A simple box model treated as a closed system has been developed to study the exchange of water molecules between an air and a snow reservoir. In the vapor, the box model simulations show too much isotopic depletion compared to the observations. Mixing with other sources (advection, free troposphere) has to be included in order to fit the observations. At the snow surface, the simulated isotopic values are close to the observations with a snow reservoir of ∼ 5 mm depth (range of the snow sample depth). Our analysis suggests that fractionation occurs during sublimation and that vapor–snow exchanges can no longer be considered insignificant for the isotopic composition of ... Article in Journal/Newspaper Antarc* Antarctica East Antarctica ice core The Cryosphere Directory of Open Access Journals: DOAJ Articles East Antarctica Kohnen ENVELOPE(0.000,0.000,-75.000,-75.000) Kohnen Station ENVELOPE(0.000,0.000,-75.000,-75.000) The Cryosphere 10 4 1647 1663
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language English
topic Environmental sciences
GE1-350
Geology
QE1-996.5
spellingShingle Environmental sciences
GE1-350
Geology
QE1-996.5
F. Ritter
H. C. Steen-Larsen
M. Werner
V. Masson-Delmotte
A. Orsi
M. Behrens
G. Birnbaum
J. Freitag
C. Risi
S. Kipfstuhl
Isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at Kohnen station, East Antarctica
topic_facet Environmental sciences
GE1-350
Geology
QE1-996.5
description Quantifying the magnitude of post-depositional processes affecting the isotopic composition of surface snow is essential for a more accurate interpretation of ice core data. To achieve this, high temporal resolution measurements of both lower atmospheric water vapor and surface snow isotopic composition are required. This study presents continuous measurements of water vapor isotopes performed in East Antarctica (Kohnen station) from December 2013 to January 2014 using a laser spectrometer. Observations have been compared with the outputs of two atmospheric general circulation models (AGCMs) equipped with water vapor isotopes: ECHAM5-wiso and LMDZ5Aiso. During our monitoring period, the signals in the 2 m air temperature T , humidity mixing ratio q and both water vapor isotopes δ D and δ 18 O are dominated by the presence of diurnal cycles. Both AGCMs simulate similar diurnal cycles with a mean amplitude 30 to 70 % lower than observed, possibly due to an incorrect simulation of the surface energy balance and the boundary layer dynamics. In parallel, snow surface samples were collected each hour over 35 h, with a sampling depth of 2–5 mm. A diurnal cycle in the isotopic composition of the snow surface is observed in phase with the water vapor, reaching a peak-to-peak amplitude of 3 ‰ for δ D over 24 h (compared to 36 ‰ for δ D in the water vapor). A simple box model treated as a closed system has been developed to study the exchange of water molecules between an air and a snow reservoir. In the vapor, the box model simulations show too much isotopic depletion compared to the observations. Mixing with other sources (advection, free troposphere) has to be included in order to fit the observations. At the snow surface, the simulated isotopic values are close to the observations with a snow reservoir of ∼ 5 mm depth (range of the snow sample depth). Our analysis suggests that fractionation occurs during sublimation and that vapor–snow exchanges can no longer be considered insignificant for the isotopic composition of ...
format Article in Journal/Newspaper
author F. Ritter
H. C. Steen-Larsen
M. Werner
V. Masson-Delmotte
A. Orsi
M. Behrens
G. Birnbaum
J. Freitag
C. Risi
S. Kipfstuhl
author_facet F. Ritter
H. C. Steen-Larsen
M. Werner
V. Masson-Delmotte
A. Orsi
M. Behrens
G. Birnbaum
J. Freitag
C. Risi
S. Kipfstuhl
author_sort F. Ritter
title Isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at Kohnen station, East Antarctica
title_short Isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at Kohnen station, East Antarctica
title_full Isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at Kohnen station, East Antarctica
title_fullStr Isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at Kohnen station, East Antarctica
title_full_unstemmed Isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at Kohnen station, East Antarctica
title_sort isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at kohnen station, east antarctica
publisher Copernicus Publications
publishDate 2016
url https://doi.org/10.5194/tc-10-1647-2016
https://doaj.org/article/8565f850ea5a48278ab886e560542a34
long_lat ENVELOPE(0.000,0.000,-75.000,-75.000)
ENVELOPE(0.000,0.000,-75.000,-75.000)
geographic East Antarctica
Kohnen
Kohnen Station
geographic_facet East Antarctica
Kohnen
Kohnen Station
genre Antarc*
Antarctica
East Antarctica
ice core
The Cryosphere
genre_facet Antarc*
Antarctica
East Antarctica
ice core
The Cryosphere
op_source The Cryosphere, Vol 10, Iss 4, Pp 1647-1663 (2016)
op_relation http://www.the-cryosphere.net/10/1647/2016/tc-10-1647-2016.pdf
https://doaj.org/toc/1994-0416
https://doaj.org/toc/1994-0424
1994-0416
1994-0424
doi:10.5194/tc-10-1647-2016
https://doaj.org/article/8565f850ea5a48278ab886e560542a34
op_doi https://doi.org/10.5194/tc-10-1647-2016
container_title The Cryosphere
container_volume 10
container_issue 4
container_start_page 1647
op_container_end_page 1663
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