ICC

イスコアコンソーシアム(略称:ICC)は、国立極地研究所アイスコア研究委員会の中に設置された共同研究組織です。ICC は南極氷床ドームふじ深層掘削計画で掘削されたアイスコアの解析と研究の実施、 研究の連携と推進をはかる目的で設置されています。

ドームふじICCのロゴ
 

研究集会の情報

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本欄に記載すべき研究会合等の情報を事務局までお寄せください。

 PAGES 2025
Shanghai, China
7th Open Science Meeting,  21-24 May 2025
5th Young Scientists Meeting, 19-20 May 2025
Earth System Changes from the Past towards the Future
要旨締め切り:2024年12月1日

 地球環境史学会
第10回地球環境史学会年会
期日:2024年11月29日(金)-30日(土)
場所:国立極地研究所
開催様式:会場での対面方式(ハイブリッド講演・配信の予定はありません)
参加登録締め切り 2024年10月11日(金)

 3rd IPICS Open Science Conference 終了しました。
Ice Core Science at the three Poles
October 2022 in Crans-Montana, Switzerland


JGR Earth Surface 誌の表紙ページにドームふじ深層コアが掲載されました。
 
Ohno, H. et al.,  Physicochemical properties of bottom ice from Dome Fuji, inland East Antarctica, Journal of Geophysical Research: Earth Surface, doi:10.1002/2015jf003777, 2016.
  

 

ICC事務局

E-mail: teionsitu  [at]  nipr.ac.jp
大学共同利用機関法人
情報・システム研究機構
国立極地研究所内
〒190-8518 東京都立川市緑町10-3
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国立極地研究所



 







 

カウンタ 2016年

COUNTER262190

オンライン状況

オンラインユーザー4人


国立極地研究所を南側から見る。

北側ゲート。
 
論文発表および出版物

 
これまでにICC会員が出版したドームふじ氷床コアに関しての出版論文を、最近のものから順に記載しています.
※追加情報をお寄せ下さい。
<2024>
 Kawamura, K., Oyabu, I., 2024. Two decades of deep ice cores from Antarctica. Nature. https://doi.org/10.1038/d41586-024-01507-5

 Inoue, R., Aoki, T., Fujita, S., Tsutaki, S., Motoyama, H., Nakazawa, F., Kawamura, K., 2024. Spatial variation in the specific surface area of surface snow measured along the traverse route from the coast to Dome Fuji, Antarctica, during austral summer. The Cryosphere 18, 3513–3531. https://doi.org/10.5194/tc-18-3513-2024

 Inoue, R., Fujita, S., Kawamura, K., Oyabu, I., Nakazawa, F., Motoyama, H., Aoki, T., 2024. Spatial distribution of vertical density and microstructure profiles in near-surface firn around Dome Fuji, Antarctica. The Cryosphere 18, 425–449. https://doi.org/10.5194/tc-18-425-2024

 Hattori, S., Ishino, S., Suzuki, N., Nakazawa, F., Oyabu, I., Tsutaki, S., Hirabayashi, M., Noro, K., Takenaka, N., Kawamura, K., Yoshida, N., Motoyama, H., 2024. Latitudinal difference in sulfate formation from methanesulfonate oxidation in Antarctic snow imprinted on 17O-excess signature. Applied Geochemistry 162, 105901. https://doi.org/10.1016/j.apgeochem.2024.105901

<2023>

 Oyabu, I., Kawamura, K., Fujita, S., Inoue, R., Motoyama, H., Fukui, K., Hirabayashi, M., Hoshina, Y., Kurita, N., Nakazawa, F., Ohno, H., Sugiura, K., Suzuki, T., Tsutaki, S., Abe-Ouchi, A., Niwano, M., Parrenin, F., Saito, F., Yoshimori, M., 2023. Temporal variations of surface mass balance over the last 5000 years around Dome Fuji, Dronning Maud Land, East Antarctica. Climate of the Past 19, 293–321. https://doi.org/10.5194/cp-19-293-2023

 Motizuki, Y., Nakai, Y., Takahashi, K., Hirose, J., Sahoo, Y.V., Yumoto, M., Maruyama, M., Sakashita, M., Kase, K., Wada, S., Motoyama, H., Yano, Y., 2023. A novel laser melting sampler for discrete, sub-centimeter depth-resolved analyses of stable water isotopes in ice cores. Journal of Glaciology 1–7. https://doi.org/10.1017/jog.2023.52

 Obase, T., Abe-Ouchi, A., Saito, F., Tsutaki, S., Fujita, S., Kawamura, K., Motoyama, H., 2023. A one-dimensional temperature and age modeling study for selecting the drill site of the oldest ice core near Dome Fuji, Antarctica. The Cryosphere 17, 2543–2562. https://doi.org/10.5194/tc-17-2543-2023

<2022>
 Tsutaki, S., Fujita, S., Kawamura, K., Abe-Ouchi, A., Fukui, K., Motoyama, H., Hoshina, Y., Nakazawa, F., Obase, T., Ohno, H., Oyabu, I., Saito, F., Sugiura, K., Suzuki, T., 2022. High-resolution subglacial topography around Dome Fuji, Antarctica, based on ground-based radar surveys over 30 years. The Cryosphere 16, 2967–2983. https://doi.org/10.5194/tc-16-2967-2022

 Saruya, T., Fujita, S., Iizuka, Y., Miyamoto, A., Ohno, H., Hori, A., Shigeyama, W., Hirabayashi, M., Goto-Azuma, K., 2022. Development of crystal orientation fabric in the Dome Fuji ice core in East Antarctica: implications for the deformation regime in ice sheets. The Cryosphere 16, 2985–3003. https://doi.org/10.5194/tc-16-2985-2022

 Saruya, T., Fujita, S., Inoue, R., 2022. Dielectric anisotropy as indicator of crystal orientation fabric in Dome Fuji ice core: method and initial results. Journal of Glaciology 68, 65–76. https://doi.org/10.1017/jog.2021.73

 Oyabu, I., Kawamura, K., Buizert, C., Parrenin, F., Orsi, A., Kitamura, K., Aoki, S., Nakazawa, T., 2022. The Dome Fuji ice core DF2021 chronology (0-207 kyr BP). Quaternary Science Reviews 294, 107754. https://doi.org/10.1016/j.quascirev.2022.107754

 Uemura, R., Masaka, K., Iizuka, Y., Hirabayashi, M., Matsui, H., Matsumoto, R., Uemura, M., Fujita, K., Motoyama, H., 2022. Soluble salts in deserts as a source of sulfate aerosols in an Antarctic ice core during the last glacial period. Earth and Planetary Science Letters 578, 117299. https://doi.org/10.1016/j.epsl.2021.117299

 Morgan, J.D., Buizert, C., Fudge, T.J., Kawamura, K., Severinghaus, J.P., Trudinger, C.M., 2022. Gas isotope thermometry in the South Pole and Dome Fuji ice cores provides evidence for seasonal rectification of ice core gas records. The Cryosphere 16, 2947–2966.https://doi.org/10.5194/tc-16-2947-2022


<2021>
 Van Liefferinge, B., Taylor, D., Tsutaki, S., Fujita, S., Gogineni, P., Kawamura, K., Matsuoka, K., Moholdt, G., Oyabu, I., Abe-Ouchi, A., Awasthi, A., Buizert, C., Gallet, J.-C., Isaksson, E., Motoyama, H., Nakazawa, F., Ohno, H., O’Neill, C., Pattyn, F., Sugiura, K., 2021. Surface Mass Balance Controlled by Local Surface Slope in Inland Antarctica: Implications for Ice-Sheet Mass Balance and Oldest Ice Delineation in Dome Fuji. Geophysical Research Letters 48, e2021GL094966. https://doi.org/10.1029/2021GL094966

 Oyabu, I., Kawamura, K., Uchida, T., Fujita, S., Kitamura, K., Hirabayashi, M., Aoki, S., Morimoto, S., Nakazawa, T., Severinghaus, J.P., Morgan, J., 2021. Fractionation of O₂/N2 and Ar/N2 in the Antarctic ice sheet during bubble formation and bubble–clathrate hydrate transition from precise gas measurements of the Dome Fuji ice core. The Cryosphere 15, 5529–5555. https://doi.org/10.5194/tc-15-5529-2021

 Kanzawa, K., Miyake, F., of, K.H.J., 2021, 2021. High-Resolution 10Be and 36Cl Data from the Antarctic Dome Fuji Ice Core (∼100 years around 5480 BCE): An Unusual Grand Solar Minimum Occurrence? JGR Space Physics. https://doi.org/10.1029/2021JA029378

 Buizert, C., Fudge, T.J., Roberts, W.H.G., Steig, E.J., Sherriff-Tadano, S., Ritz, C., Lefebvre, E., Edwards, J., Kawamura, K., Oyabu, I., Motoyama, H., Kahle, E.C., Jones, T.R., Abe-Ouchi, A., Obase, T., Martin, C., Corr, H., Severinghaus, J.P., Beaudette, R., Epifanio, J.A., Brook, E.J., Martin, K., Chappellaz, J., Aoki, S., Nakazawa, T., Sowers, T.A., Alley, R.B., Ahn, J., Sigl, M., Severi, M., Dunbar, N.W., Svensson, A., Fegyveresi, J.M., He, C., Liu, Z., Zhu, J., Otto-Bliesner, B.L., Lipenkov, V.Y., Kageyama, M., Schwander, J., 2021. Antarctic surface temperature and elevation during the Last Glacial Maximum. Science 372, 1097–1101. https://doi.org/10.1126/science.abd2897

<2020>
 Oyabu, I., Kawamura, K., Kitamura, K., Dallmayr, R., Kitamura, A., Sawada, C., Severinghaus, J.P., Beaudette, R., Orsi, A., Sugawara, S., Ishidoya, S., Dahl-Jensen, D., Goto-Azuma, K., Aoki, S., Nakazawa, T., 2020. New technique for high-precision, simultaneous measurements of CH4, N2O and CO2 concentrations; isotopic and elemental ratios of N2, O2 and Ar; and total air content in ice cores by wet extraction. Atmospheric Measurement Techniques 13, 6703–6731. https://doi.org/10.5194/amt-13-6703-2020

 Oyabu, I., Iizuka, Y., Kawamura, K., Wolff, E., Severi, M., Ohgaito, R., Abe-Ouchi, A., Hansson, M., 2020. Compositions of Dust and Sea Salts in the Dome C and Dome Fuji Ice Cores From Last Glacial Maximum to Early Holocene Based on Ice-Sublimation and Single-Particle Measurements. Journal of Geophysical Research: Atmospheres 125, 1205–25. https://doi.org/10.1029/2019JD032208

 Motoyama, H., Takahashi, A., Tanaka, Y., Shinbori, K., Miyahara, M., Yoshimoto, T., Fujii, Y., Furusaki, A., Azuma, N., Ozawa, Y., Kobayashi, A., Yoshise, Y., 2020. Deep ice core drilling to a depth of 3035.22 m at Dome Fuji, Antarctica in 2001-07. Annals of Glaciology 62, 212–222. https://doi.org/10.1017/aog.2020.84

<2019>
 Goto-Azuma, K., Hirabayashi, M., Motoyama, H., Miyake, T., Kuramoto, T., Uemura, R., Igarashi, M., Iizuka, Y., Sakurai, T., Horikawa, S., Suzuki, K., Suzuki, T., Fujita, K., Kondo, Y., Hattori, S., Fujii, Y., 2019. Reduced marine phytoplankton sulphur emissions in the Southern Ocean during the past seven glacials. Nature Communications 1–7. https://doi.org/10.1038/s41467-019-11128-6

<2018>
 掲載誌: Nature
タイトル: Abrupt Ice Age Shifts in Southern Westerlies and Antarctic Climate Forced from the North
著者: Christo Buizert, Michael Sigl, Mirko Severi, Bradley R. Markle, Justin J. Wettstein, Joseph R. McConnell, Joel B. Pedro, Harald Sodemann, 東 久美子, 川村 賢二, 藤田 秀二, 本山 秀明, 平林 幹啓, 植村 立, Barbara Stenni, Frédéric Parrenin, Feng He, T.J. Fudge and Eric J. Steig

 F. Miyake, K. Horiuchi, Y. Motizuki, Y. Nakai, K. Takahashi, K.  Masuda, H. Motoyama, H. Matsuzaki, 10Be signature of the cosmic ray event in the 10th century CE in both hemispheres, as confirmed by quasi-annual 10Be data from the Antarctic Dome Fuji ice core. Geophysical Research Letters DOI: 10.1029/2018GL080475

 Takahashi K, Nakai Y, Motizuki Y, et al. High‐sensitivity sulfur isotopic measurements for Antarctic ice core analyses. Rapid Commun Mass Spectrom. 2018;32:1991–1998. https://doi.org/10.1002/rcm.8275

 Ryu Uemura, Hideaki Motoyama, Valérie Masson-Delmotte, Jean Jouzel, Kenji Kawamura, Kumiko Goto-Azuma, Shuji Fujita, Takayuki Kuramoto, Motohiro Hirabayashi, Takayuki Miyake, Hiroshi Ohno, Koji Fujita, Ayako Abe-Ouchi, Yoshinori Iizuka, Shinichiro Horikawa8,1, Makoto Igarashi, Keisuke Suzuki, Toshitaka Suzuki & Yoshiyuki Fujii: “Asynchrony between Antarctic temperature and CO2 associated with obliquity over the past 720,000 years", Nature Communications 9(1) 961, 2018, doi:10.1038/s41467-018-03328-3
https://www.nature.com/articles/s41467-018-03328-3

<2017>
 Y. Motizuki, H. Motoyama, Y. Nakai, K. Suzuki, Y. Iizuka and K. Takahashi: “Overview of the chemical composition and characteristics of Na+ and Cl– distributions in shallow samples from Antarctic ice core DF01 (Dome Fuji) drilled in 2001”, Geochemical J., 51, 6 pages, 2017, doi:10.2343/geochemj.2.0458.

http://www.terrapub.co.jp/journals/GJ/pdf/2017e/OA_GJ458.pdf

 Dome Fuji Ice Core Project Members, State dependence of climatic instability over the past 720,000 years from Antarctic ice cores and climate modelling, Science Advances, Vol. 3, no. 2, e1600446, DOI: 10.1126/sciadv.1600446, 2017.


<2016>
 Sakurai, T., Ohno, H., Motoyama, H., Uchida, T., Micro-droplets containing sulfate in the Dome Fuji deep ice core, Antarctica: findings using micro-Raman spectroscopy, Journal of Raman Spectroscopy, doi:10.1002/jrs_5040, 2016. Ohno, H., Iizuka, Y., Hori, A., Miyamoto, A., Hirabayashi, M., Miyake, T., Kuramoto, T., Fujita, S., Segawa, T., Uemura, R., Sakurai, T., Suzuki, T., and Motoyama, H. C. J. F.: Physicochemical properties of bottom ice from Dome Fuji, inland East Antarctica, Journal of Geophysical Research: Earth Surface, 10.1002/2015jf003777, 2016.
 F. PARRENIN*, S. FUJITA*, A. ABE-OUCHI, K. KAWAMURA, V. MASSON-DELMOTTE, H. MOTOYAMA, F. SAITO, M. SEVERI, B. STENNI, R. UEMURA and E. W. WOLFF, Climate dependent contrast in surface mass balance in East Antarctica over the past 216 ka, Journal of Glaciology, 2016.
*Both are the first authors

 YOSHINORI IIZUKA, HIROSHI OHNO, RYU UEMURA, TOSHITAKA SUZUKI, IKUMI OYABU, YU HOSHINA, KOTARO FUKUI, MOTOHIRO HIRABAYASHI and HIDEAKI MOTOYAMA, Spatial distributions of soluble salts in surface snow of East Antarctica, Tellus B 2016, 68, 29285, 2016.
 Ryu Uemura, Kosuke Masaka, Kotaro Fukui, Yoshinori Iizuka, Motohiro Hirabayashi, Hideaki Motoyama, Sulfur isotopic composition of surface snow along a latitudinal transect in East Antarctica, Geophys. Res. Lets., DOI: 10.1002/2016GL069482, 2016.
http://onlinelibrary.wiley.com/doi/10.1002/2016GL069482/full

 Fujita, S., Goto-Azuma, K., Hirabayashi, M., Hori, A., Iizuka, Y., Motizuki, Y., Motoyama, H., and Takahashi, K.: Densification of layered firn in the ice sheet at dome fuji, antarctica, JOURNAL OF GLACIOLOGY, FirstView, 1-21, doi:10.1017/jog.2016.16, 2016.
http://journals.cambridge.org/repo_A10Sg6BtD.C4.I

 Horiuchi, K., Kamata, K., Maejima, S., Sasaki, S., Sasaki, N., Yamazaki, T., Fujita, S., Motoyama, H., and Matsuzaki, H.: Multiple 10Be records revealing the history of cosmic-ray variations across the iceland basin excursion, Earth and Planetary Science Letters, 440, 105-114,
http://dx.doi.org/10.1016/j.epsl.2016.01.034, 2016.

http://authors.elsevier.com/a/1SbFp,Ig45Yr1

 Dittmann, A., Schlosser, E., Masson-Delmotte, V., Powers, J. G., Manning, K. W., Werner, M., and Fujita, K.: Precipitation regime and stable isotopes at Dome Fuji, east antarctica, Atmos. Chem. Phys. Discuss., 2016, 1-32, 10.5194/acp-2015-1012, 2016.
http://www.atmos-chem-phys-discuss.net/acp-2015-1012/

 Shin'ya Nakano, Kazue Suzuki, Kenji Kawamura, Frédéric Parrenin and Tomoyuki Higuchi: A sequential Bayesian approach for the estimation of the age–depth relationship of the Dome Fuji ice core, Nonlin. Processes Geophys., 23, 31-44, 2016
doi:10.5194/npg-23-31-2016
http://www.nonlin-processes-geophys.net/23/31/2016/


 Hoshina, Y., Fujita, K., Iizuka, Y., and Motoyama, H.: Inconsistent relationships between major ions and water stable isotopes in antarctic snow under different accumulation environments, Polar Science, http://dx.doi.org/10.1016/j.polar.2015.12.003, 2016.

<2015>


 Kobashi, T., Ikeda-Fukazawa, T., Suwa, M., Schwander, J., Kameda, T.,
Lundin, J., Hori, A., Motoyama, H., Doring, M., and Leuenberger, M.:
Post-bubble close-off fractionation of gases in polar firn and ice
cores: effects of accumulation rate on permeation through overloading
pressure, Atmos. Chem. Phys., 15, 13895-13914,
doi:10.5194/acp-15-13895-2015, 2015.

http://www.atmos-chem-phys.net/15/13895/2015/acp-15-13895-2015.html

 S. Fujita*, F. Parrenin*, M. Severi, H. Motoyama, E. Wolff (* Both are the first authors)
Volcanic synchronization of Dome Fuji and Dome C Antarctic deep ice cores over the past 216 kyr. Climate of the Past   11 1395-1416

 Parrenin, F., S. Fujita, A. Abe-Ouchi, K. Kawamura, V. Masson-Delmotte, H. Motoyama, F. Saito, M. Severi, B. Stenni, R. Uemura and E. Wolff 2015. Climate dependent contrast in surface mass balance in East Antarctica over the past 216 kyr. Clim. Past Discuss., 11(1): 377-405.
http://www.clim-past-discuss.net/11/377/2015/

 Svensson, A., Fujita, S., Bigler, M., Braun, M., Dallmayr, R., Gkinis, V., Goto-Azuma, K., Hirabayashi, M., Kawamura, K., Kipfstuhl, S., Kjaer, H. A., Popp, T., Simonsen, M., Steffensen, J. P., Vallelonga, P., and Vinther, B. M. On the occurrence of annual layers in Dome Fuji ice core early holocene ice.  Climate of the Past   11 1127-1137
http://www.clim-past.net/11/1127/2015/cp-11-1127-2015.html

 Miyake, F., A. Suzuki, K. Masuda, K. Horiuchi, H. Motoyama, H. Matsuzaki, Y. Motizuki, K. Takahashi, and Y. Nakai (2015), Cosmic ray event of A.D. 774–775 shown in quasi-annual 10Be data from the Antarctic Dome Fuji ice core, Geophys. Res. Lett., 42, 84–89, doi:10.1002/2014GL062218.



<2014>


 Uchida, T., K. Yasuda, Y. Ot, R. Shen and R. Ohmura 2014. Natural supersaturation conditions needed for nucleation of air-clathrate hydrates in deep ice sheets. JOURNAL OF GLACIOLOGY, 60(224): 1111-1116.

 Oyabu, I., Y. Iizuka, R. Uemura, T. Miyake, M. Hirabayashi, H. Motoyama, T. Sakurai, T. Suzuki and T. Hondoh 2014. Chemical compositions of sulfate and chloride salts over the last termination reconstructed from the Dome Fuji ice core, inland Antarctica. Journal of Geophysical Research-Atmospheres, 119(24): 14045-14058.

 M. Sigl, J. McConnell, M. Toohey, M. Curran, S. Das, R. Edwards, E. Isaksson, K. Kawamura, S. Kipfstuhl, K. Krüger, L. Layman, O. Maselli, Y. Motizuki, H. Motoyama, D. Pasteris, M. Severi, “Insights from Antarctica on volcanic forcing during the Common Era”, Nature Climate Change, 2014, doi: 10.1038/nclimate2293.

 Hoshina, Y., K. Fujita, F. Nakazawa, Y. Iizuka, T. Miyake, M. Hirabayashi, T. Kuramoto, S. Fujita and H. Motoyama 2014. Effect of accumulation rate on water stable isotopes of near-surface snow in inland Antarctica. Journal of Geophysical Research-Atmospheres, 119(1): 274-283.

 Motizuki, Y., Nakai, Y., Takahashi, K., Igarashi, M., Motoyama, H., and Suzuki, K.: Dating of a Dome Fuji (Antarctica) shallow ice core by volcanic signal synchronization with B32 and EDML1 chronologies, The Cryosphere Discuss., 8, 769-804, doi:10.5194/tcd-8-769-2014, 2014.

 2013年以前の出版物はこちらこちらに掲載しています。