CHARACTERISTICS OF AC-ECM SIGNALS OBTAINED BY USE OF THE VESTFONNA ICE CORE, SVALBARD
P(論文) AC-ECM measurements of the Vestfonna ice core were carried out under the following conditions : at -12,-17,-22 and -27℃ under 1MHz; at -22℃ under frequencies from 300kHz to 1MHz. The relationship between conductance measured with AC-ECM and acidity was linear. It is considered that salt impuri...
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Language: | English |
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National Institute of Polar Research
1997
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Online Access: | https://nipr.repo.nii.ac.jp/record/3970/files/KJ00001014933.pdf https://doi.org/10.15094/00003970 https://nipr.repo.nii.ac.jp/records/3970 |
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author | マツオカ, ケンイチ ナリタ, ヒデキ スギヤマ, ケン マトバ, スミト モトヤマ, ヒデアキ ワタナベ, オキツグ MATSUOKA, Kenichi NARITA, Hideki SUGIYAMA, Ken MATOBA, Sumito MOTOYAMA, Hideaki WATANABE, Okitsugu |
author_facet | マツオカ, ケンイチ ナリタ, ヒデキ スギヤマ, ケン マトバ, スミト モトヤマ, ヒデアキ ワタナベ, オキツグ MATSUOKA, Kenichi NARITA, Hideki SUGIYAMA, Ken MATOBA, Sumito MOTOYAMA, Hideaki WATANABE, Okitsugu |
author_sort | マツオカ, ケンイチ |
collection | National Institute of Polar Research Repository, Japan |
description | P(論文) AC-ECM measurements of the Vestfonna ice core were carried out under the following conditions : at -12,-17,-22 and -27℃ under 1MHz; at -22℃ under frequencies from 300kHz to 1MHz. The relationship between conductance measured with AC-ECM and acidity was linear. It is considered that salt impurities also affect to the AC-ECM signals. However, we focus on the effect of acidity, because it is known that the effect of acid on the a. c. conductance is 3.6 times as large as that of salt from DEP analysis of the Dolleman ice core. The intercept of the linear regression is coincident with the conductance of pure ice; at -23℃, it is 3.6nS. The gradient, conductance increases raised acid, is 0.70nS l/μmol at -23℃. The gradients at four temperatures were well fitted with the Arrhenius equation and activation energy is 24.8kJ/mol. Activation energy obtained from this study, the Dolleman ice core and acid-doped ice agree with each other within the error range. The conductance at -22℃ increases monotonically from 300kHz to 1MHz. This tendency is not caused by the system but by impurities in the specimen. The ratio between the conductance at 300kHz and at 1MHz is 0.845. This can not explain with one Debye dispersion. These results add basic knowledge for radio-echo soundings, especially at percolation zone in the ice cap. departmental bulletin paper |
genre | Ice cap ice core Polar meteorology and glaciology Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology Svalbard Vestfonna |
genre_facet | Ice cap ice core Polar meteorology and glaciology Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology Svalbard Vestfonna |
geographic | Svalbard Vestfonna Dolleman |
geographic_facet | Svalbard Vestfonna Dolleman |
id | ftnipr:oai:nipr.repo.nii.ac.jp:00003970 |
institution | Open Polar |
language | English |
long_lat | ENVELOPE(20.761,20.761,79.941,79.941) ENVELOPE(-60.733,-60.733,-70.616,-70.616) |
op_collection_id | ftnipr |
op_doi | https://doi.org/10.15094/00003970 |
op_relation | Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology 11 67 75 AA10756213 https://nipr.repo.nii.ac.jp/record/3970/files/KJ00001014933.pdf https://doi.org/10.15094/00003970 https://nipr.repo.nii.ac.jp/records/3970 |
publishDate | 1997 |
publisher | National Institute of Polar Research |
record_format | openpolar |
spelling | ftnipr:oai:nipr.repo.nii.ac.jp:00003970 2025-04-13T14:20:32+00:00 CHARACTERISTICS OF AC-ECM SIGNALS OBTAINED BY USE OF THE VESTFONNA ICE CORE, SVALBARD マツオカ, ケンイチ ナリタ, ヒデキ スギヤマ, ケン マトバ, スミト モトヤマ, ヒデアキ ワタナベ, オキツグ MATSUOKA, Kenichi NARITA, Hideki SUGIYAMA, Ken MATOBA, Sumito MOTOYAMA, Hideaki WATANABE, Okitsugu 1997-11 application/pdf https://nipr.repo.nii.ac.jp/record/3970/files/KJ00001014933.pdf https://doi.org/10.15094/00003970 https://nipr.repo.nii.ac.jp/records/3970 eng eng National Institute of Polar Research Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology 11 67 75 AA10756213 https://nipr.repo.nii.ac.jp/record/3970/files/KJ00001014933.pdf https://doi.org/10.15094/00003970 https://nipr.repo.nii.ac.jp/records/3970 1997 ftnipr https://doi.org/10.15094/00003970 2025-03-19T10:19:57Z P(論文) AC-ECM measurements of the Vestfonna ice core were carried out under the following conditions : at -12,-17,-22 and -27℃ under 1MHz; at -22℃ under frequencies from 300kHz to 1MHz. The relationship between conductance measured with AC-ECM and acidity was linear. It is considered that salt impurities also affect to the AC-ECM signals. However, we focus on the effect of acidity, because it is known that the effect of acid on the a. c. conductance is 3.6 times as large as that of salt from DEP analysis of the Dolleman ice core. The intercept of the linear regression is coincident with the conductance of pure ice; at -23℃, it is 3.6nS. The gradient, conductance increases raised acid, is 0.70nS l/μmol at -23℃. The gradients at four temperatures were well fitted with the Arrhenius equation and activation energy is 24.8kJ/mol. Activation energy obtained from this study, the Dolleman ice core and acid-doped ice agree with each other within the error range. The conductance at -22℃ increases monotonically from 300kHz to 1MHz. This tendency is not caused by the system but by impurities in the specimen. The ratio between the conductance at 300kHz and at 1MHz is 0.845. This can not explain with one Debye dispersion. These results add basic knowledge for radio-echo soundings, especially at percolation zone in the ice cap. departmental bulletin paper Other/Unknown Material Ice cap ice core Polar meteorology and glaciology Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology Svalbard Vestfonna National Institute of Polar Research Repository, Japan Svalbard Vestfonna ENVELOPE(20.761,20.761,79.941,79.941) Dolleman ENVELOPE(-60.733,-60.733,-70.616,-70.616) |
spellingShingle | マツオカ, ケンイチ ナリタ, ヒデキ スギヤマ, ケン マトバ, スミト モトヤマ, ヒデアキ ワタナベ, オキツグ MATSUOKA, Kenichi NARITA, Hideki SUGIYAMA, Ken MATOBA, Sumito MOTOYAMA, Hideaki WATANABE, Okitsugu CHARACTERISTICS OF AC-ECM SIGNALS OBTAINED BY USE OF THE VESTFONNA ICE CORE, SVALBARD |
title | CHARACTERISTICS OF AC-ECM SIGNALS OBTAINED BY USE OF THE VESTFONNA ICE CORE, SVALBARD |
title_full | CHARACTERISTICS OF AC-ECM SIGNALS OBTAINED BY USE OF THE VESTFONNA ICE CORE, SVALBARD |
title_fullStr | CHARACTERISTICS OF AC-ECM SIGNALS OBTAINED BY USE OF THE VESTFONNA ICE CORE, SVALBARD |
title_full_unstemmed | CHARACTERISTICS OF AC-ECM SIGNALS OBTAINED BY USE OF THE VESTFONNA ICE CORE, SVALBARD |
title_short | CHARACTERISTICS OF AC-ECM SIGNALS OBTAINED BY USE OF THE VESTFONNA ICE CORE, SVALBARD |
title_sort | characteristics of ac-ecm signals obtained by use of the vestfonna ice core, svalbard |
url | https://nipr.repo.nii.ac.jp/record/3970/files/KJ00001014933.pdf https://doi.org/10.15094/00003970 https://nipr.repo.nii.ac.jp/records/3970 |