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Discovery of argon in air-hydrate crystals in a deep ice core using scanning electron microscopy and energy-dispersive X-ray spectroscopy

Authors :
Uchida, Tsutomu
Shigeyama, Wataru
Oyabu, Ikumi
Goto-Azuma, Kumiko
Nakazawa, Fumio
Homma, Tomoyuki
Kawamura, Kenji
Dahl-Jensen, Dorthe
Uchida, Tsutomu
Shigeyama, Wataru
Oyabu, Ikumi
Goto-Azuma, Kumiko
Nakazawa, Fumio
Homma, Tomoyuki
Kawamura, Kenji
Dahl-Jensen, Dorthe
Source :
Uchida , T , Shigeyama , W , Oyabu , I , Goto-Azuma , K , Nakazawa , F , Homma , T , Kawamura , K & Dahl-Jensen , D 2022 , ' Discovery of argon in air-hydrate crystals in a deep ice core using scanning electron microscopy and energy-dispersive X-ray spectroscopy ' , Journal of Glaciology , vol. 68 , no. 269 , pp. 547-556 .
Publication Year :
2022

Abstract

Tiny samples of ancient atmosphere in air bubbles within ice cores contain argon (Ar), which can be used to reconstruct past temperature changes. At a sufficient depth, the air bubbles are compressed by the overburden pressure under low temperature and transform into air-hydrate crystals. While the oxygen (O2) and nitrogen (N2) molecules have indeed been identified in the air-hydrate crystals with Raman spectroscopy, direct observational knowledge of the distribution of Ar at depth within ice sheet and its enclathration has been lacking. In this study, we applied scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS) to five air-hydrate crystals in the Greenland NEEM ice core, finding them to contain Ar and N. Given that Ar cannot be detected by Raman spectroscopy, the method commonly used for O2 and N2, the SEM-EDS measurement method may become increasingly useful for measuring inert gases in deep ice cores.

Details

Database :
OAIster
Journal :
Uchida , T , Shigeyama , W , Oyabu , I , Goto-Azuma , K , Nakazawa , F , Homma , T , Kawamura , K & Dahl-Jensen , D 2022 , ' Discovery of argon in air-hydrate crystals in a deep ice core using scanning electron microscopy and energy-dispersive X-ray spectroscopy ' , Journal of Glaciology , vol. 68 , no. 269 , pp. 547-556 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1382500398
Document Type :
Electronic Resource