水月湖コア試料に含まれるテフラ層の対比から推定される三瓶火山噴出物の化学的変動

三瓶火山から噴出した三瓶小屋原テフラに対比された水月湖コア中のテフラ層に関して,給源火山近傍で採取された三瓶小屋原テフラおよび大山鴨ヶ丘テフラ試料の岩石学的特性と,三瓶小屋原テフラ中の火山ガラスの化学組成に基づき対比を行った。水月湖コア試料の岩石学的・化学的特性は,このテフラ試料が大山鴨ヶ丘テフラに対比されることを示唆するものであった。大山鴨ヶ丘テフラは噴出量が僅かなため,水月湖まで達することができたかどうかは疑問である。そのような問題はあるものの,同時期に噴出した他の大山テフラは発見されておらず,また先行研究で示されたこの水月湖テフラの層厚が非常に薄いことを考慮すると,このテフラ試料がごく僅...

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Published in地学雑誌 Vol. 130; no. 3; pp. 429 - 443
Main Authors 丸山, 誠史, 平田, 岳史, 山下, 透, 檀原, 徹
Format Journal Article
LanguageJapanese
Published 公益社団法人 東京地学協会 25.06.2021
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ISSN0022-135X
1884-0884
DOI10.5026/jgeography.130.429

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Abstract 三瓶火山から噴出した三瓶小屋原テフラに対比された水月湖コア中のテフラ層に関して,給源火山近傍で採取された三瓶小屋原テフラおよび大山鴨ヶ丘テフラ試料の岩石学的特性と,三瓶小屋原テフラ中の火山ガラスの化学組成に基づき対比を行った。水月湖コア試料の岩石学的・化学的特性は,このテフラ試料が大山鴨ヶ丘テフラに対比されることを示唆するものであった。大山鴨ヶ丘テフラは噴出量が僅かなため,水月湖まで達することができたかどうかは疑問である。そのような問題はあるものの,同時期に噴出した他の大山テフラは発見されておらず,また先行研究で示されたこの水月湖テフラの層厚が非常に薄いことを考慮すると,このテフラ試料がごく僅かながら水月湖まで到達することができた大山鴨ヶ丘テフラである可能性がある。給源火山近傍で採取された三瓶小屋原テフラ試料と,三瓶火山を給源とするテフラに対比された水月湖コア試料の火山ガラスの元素濃度パターンから,三瓶火山のマグマの化学組成が,ステージII(三瓶小屋原テフラ)とステージIV(三瓶浮布テフラ)の間に,ステージIIIの遷移的アダカイト質(三瓶池田テフラ)を経由して非アダカイト質からアダカイト質へと変化したことが示唆された。
AbstractList 三瓶火山から噴出した三瓶小屋原テフラに対比された水月湖コア中のテフラ層に関して,給源火山近傍で採取された三瓶小屋原テフラおよび大山鴨ヶ丘テフラ試料の岩石学的特性と,三瓶小屋原テフラ中の火山ガラスの化学組成に基づき対比を行った。水月湖コア試料の岩石学的・化学的特性は,このテフラ試料が大山鴨ヶ丘テフラに対比されることを示唆するものであった。大山鴨ヶ丘テフラは噴出量が僅かなため,水月湖まで達することができたかどうかは疑問である。そのような問題はあるものの,同時期に噴出した他の大山テフラは発見されておらず,また先行研究で示されたこの水月湖テフラの層厚が非常に薄いことを考慮すると,このテフラ試料がごく僅かながら水月湖まで到達することができた大山鴨ヶ丘テフラである可能性がある。給源火山近傍で採取された三瓶小屋原テフラ試料と,三瓶火山を給源とするテフラに対比された水月湖コア試料の火山ガラスの元素濃度パターンから,三瓶火山のマグマの化学組成が,ステージII(三瓶小屋原テフラ)とステージIV(三瓶浮布テフラ)の間に,ステージIIIの遷移的アダカイト質(三瓶池田テフラ)を経由して非アダカイト質からアダカイト質へと変化したことが示唆された。
Author 平田, 岳史
山下, 透
檀原, 徹
丸山, 誠史
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  fullname: 平田, 岳史
  organization: 東京大学理学部地殻化学実験施設
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  fullname: 山下, 透
  organization: 株式会社京都フィッション・トラック
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  fullname: 檀原, 徹
  organization: 株式会社京都フィッション・トラック
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Defant, M.J., Richerson, P.M., De Boer, J.Z., Stewart, R.H., Maury, R.C., Bellon, H., Drummond, M.S., Feigenson, M.D. and Jackson, T.E. (1991): Dacite genesis via both slab melting and differentiation: Petrogenesis of La Yeguada volcanic complex, Panama. Journal of Petrology, 32, 1101-1142, doi:10.1093/petrology/32.6.1101.
Rudnick, R.L. and Fountain, D.M. (1995): Nature and composition of the continental crust: A lower crustal perspective. Reviews of Geophysics, 33, 267-309.
Maruyama, S., Makinouchi, T., Hirata, T. and Danhara, T. (2019a): Identification of multiple widespread tephras from the volcanic glass shard chemistry of muddy sediments of the Nohbi Formation, central Japan. Quaternary Research (Daiyonki-Kenkyu), 58, 333-348, doi:10.4116/jaqua.58.333.
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Suzuki, T., Maruyama, S., Danhara, T., Hirata, T., Machida, H. and Arai, F. (2020): Identification of Lower Pleistocene widespread tephras associated with large caldera-forming eruptions in the Tohoku area, north-east Japan. Journal of Quaternary Science, 35, 316-333, doi:10.1002/jqs.3162.
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Title etc. translated by S.M.
Albert, P.G., Smith, V.C., Suzuki, T., Tomlinson, E.L., Nakagawa, T., McLean, D., Yamada, M., Staff, R.A., Schlolaut, G., Takemura, K., Nagahashi, Y., Kimura, J. and Suigetsu 2006 Project Members (2018): Constraints on the frequency and dispersal of explosive eruptions at Sambe and Daisen volcanoes (South-West Japan Arc) from the distal Lake Suigetsu record (SG06 core). Earth-Science Reviews, 185, 1004?1028, doi:10.1016/j.earscirev.2018.07.003.
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Fukuoka, T. (2014): Database of research materials of Sanbe Volcano collected by Seiji Matsui and Takashi Fukuoka. Shimane Nature Museum of Mt. Sanbe, Shimane Nature and Environment Foundation. http://www.nature-sanbe.jp/sahimel/wp-content/themes/done/iso/2014matui_db.iso [Cited 2021/2/22].
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References_xml – reference: Albert, P.G., Smith, V.C., Suzuki, T., Tomlinson, E.L., Nakagawa, T., McLean, D., Yamada, M., Staff, R.A., Schlolaut, G., Takemura, K., Nagahashi, Y., Kimura, J. and Suigetsu 2006 Project Members (2018): Constraints on the frequency and dispersal of explosive eruptions at Sambe and Daisen volcanoes (South-West Japan Arc) from the distal Lake Suigetsu record (SG06 core). Earth-Science Reviews, 185, 1004?1028, doi:10.1016/j.earscirev.2018.07.003.
– reference: Matsui, S. and Inoue, T. (1971): Pyroclastics and their stratigraphy from Volc. Sambe. Earth Science (Chikyu Kagaku), 25, 147-163, doi:10.15080/agcjchikyukagaku.25.4_147.
– reference: Kimura, J., Okada, S., Nakayama, K., Umeda, K., Kusano, T., Asahara, Y., Tateno, M. and Danhara, T. (1999): Fission track ages of tephras from Daisen and Sambe volcanoes and their volcanological implications. Quaternary Research (Daiyonki-kenkyu), 38, 145-155, doi:10.4116/jaqua.38.145.
– reference: Tsukui, M. (1984): Geology of Daisen Volcano. Journal of the Geological Society of Japan, 90, 643-658, doi:10.5575/geosoc.90.643.
– reference: R Core Team (2020): R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. https://www.R-project.org/ [Cited 2021/2/22].
– reference: Maruyama, S., Takemura, K., Hirata, T., Yamashita, T. and Danhara, T. (2019b): Petrographic properties of visible tephra layers in SG93 and SG06 drill core samples from Lake Suigetsu, central Japan. Journal of Geography (Chigaku Zasshi), 128, 879-903, doi:10.5026/jgeography.128.879.
– reference: Suzuki, T., Maruyama, S., Danhara, T., Hirata, T., Machida, H. and Arai, F. (2020): Identification of Lower Pleistocene widespread tephras associated with large caldera-forming eruptions in the Tohoku area, north-east Japan. Journal of Quaternary Science, 35, 316-333, doi:10.1002/jqs.3162.
– reference: Maruyama, S., Makinouchi, T., Hirata, T. and Danhara, T. (2019a): Identification of multiple widespread tephras from the volcanic glass shard chemistry of muddy sediments of the Nohbi Formation, central Japan. Quaternary Research (Daiyonki-Kenkyu), 58, 333-348, doi:10.4116/jaqua.58.333.
– reference: Suto, S., Inomata, T., Sasaki, H. and Mukoyama, S. (2007): Data base of the volcanic ash fall distribution map of Japan. Bulletin of the Geological Survey of Japan, 58, 261-321, doi:10.9795/bullgsj.58.261.
– reference: Maruyama, S., Yamashita, T., Hayashida, A., Hirata, T. and Danhara, T. (2020b): Examination of the relationship between the Ukinuno and Sakate tephras from Sambe volcano, southwest Japan. Journal of Geography (Chigaku Zasshi), 129, 375-396, doi:10.5026/jgeography.129.375.
– reference: Defant, M.J., Richerson, P.M., De Boer, J.Z., Stewart, R.H., Maury, R.C., Bellon, H., Drummond, M.S., Feigenson, M.D. and Jackson, T.E. (1991): Dacite genesis via both slab melting and differentiation: Petrogenesis of La Yeguada volcanic complex, Panama. Journal of Petrology, 32, 1101-1142, doi:10.1093/petrology/32.6.1101.
– reference: Danhara, T., Yamashita, T., Iwano, H. and Kasuya, M. (1992): An improved system for measuring refractive index using the thermal immersion method. Quaternary International, 13/14, 89-91, doi:10.1016/1040-6182(92)90013-R.
– reference: Reimer, P.J., Bard, E., Bayliss, A., Beck, J.W., Blackwell, P.G., Bronk Ramsey, C., Buck, C.E., Cheng, H., Edwards, R.L., Friedrich, M., Grootes, P.M., Guilderson, T.P., Haflidason, H., Hajdas, I., Hatté, C., Heaton, T.J., Hoffman, D.L., Hogg, A.G., Hughen, K.A., Kaiser, K.F., Kromer, B., Manning, S.W., Niu, M., Reimer, R.W., Richards, D.A., Scott, E.M., Southon, J.R., Staff, R.A., Turney, C.S.M. and van der Plicht, J. (2013): IntCal13 and Marine13 radiocarbon age calibration curves 0-50,000 years cal BP. Radiocarbon, 55, 1869-1887, doi:10.2458/azu_js_rc.55.16947.
– reference: * Title etc. translated by S.M.
– reference: Maruyama, S., Hattori, K., Hirata, T. and Danhara, T. (2016): A proposed methodology for analyses of wide-ranged elements in volcanic glass shards in widespread Quaternary tephras. Quaternary International, 397, 267-280, doi:10.1016/j.quaint.2015.06.020.
– reference: Yoshikawa, S., Nasu, T., Taruno, H. and Furutani, M. (1986): Late Pleistocene to Holocene volcanic ash layers in central Kinki district, Japan. Earth Science (Chikyu Kagaku), 40, 18-38, doi:10.15080/agcjchikyukagaku.40.1_18.
– reference: Machida, H. and Arai, F. (2011): Atlas of Tephra in and Around Japan (the second impression of the revised edition). University of Tokyo Press.
– reference: Martin, H., Smithies, R.H., Rapp, R., Moyen, J-F. and Champion, D. (2005): An overview of adakite, tonalite–trondhjemite–granodiorite (TTG), and sanukitoid: Relationships and some implications for crustal evolution. Lithos, 79, 1-24, doi:10.1016/j.lithos.2004.04.048.
– reference: McLennan, S.M. (2001): Relationship between the trace element composition of sedimentary rocks and upper continental crust. Geochemistry, Geophysics, Geosystems, 2, doi:10.1029/2000GC000109.
– reference: Kimura, J., Tateno, M. and Osaka, I. (2005): Geology and geochemistry of Karasugasen lava dome, Daisen–Hiruzen Volcano Group, southwest Japan. Island Arc, 14, 115-136, doi:10.1111/j.1440-1738.2005.00461.x.
– reference: Yamamoto, T. (2017): Quantitative eruption history of Pleistocene Daisen Volcano, SW Japan. Bulletin of the Geological Survey of Japan, 68, 1-16, doi:10.9795/bullgsj.68.1.
– reference: Okada, S. and Ishiga, S. (2000): Tephras from Daisen volcano. in Field Excursion Guidebook, the 107th Annual Meeting of the Geological Society of Japan, 81-90.
– reference: Fukuoka, T. (2014): Database of research materials of Sanbe Volcano collected by Seiji Matsui and Takashi Fukuoka. Shimane Nature Museum of Mt. Sanbe, Shimane Nature and Environment Foundation. http://www.nature-sanbe.jp/sahimel/wp-content/themes/done/iso/2014matui_db.iso [Cited 2021/2/22].
– reference: Rudnick, R.L. and Fountain, D.M. (1995): Nature and composition of the continental crust: A lower crustal perspective. Reviews of Geophysics, 33, 267-309.
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Snippet 三瓶火山から噴出した三瓶小屋原テフラに対比された水月湖コア中のテフラ層に関して,給源火山近傍で採取された三瓶小屋原テフラおよび大山鴨ヶ丘テフラ試料の岩石学的特...
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StartPage 429
SubjectTerms テフラ
三瓶火山
化学組成
大山火山
水月湖
Title 水月湖コア試料に含まれるテフラ層の対比から推定される三瓶火山噴出物の化学的変動
URI https://www.jstage.jst.go.jp/article/jgeography/130/3/130_130.429/_article/-char/ja
Volume 130
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