Evolution history of the volcano is essential not only to characterize the volcano, but also consider magma genesis beneath the volcano. Most of the stratovolcanoes in northeast Japan follow a general evolutional course: cone building, horse-shoe shaped caldera forming collapse, and post-caldera stages. However, the detailed history of each stage is not well investigated. We investigated evolution history of young edifice of Gassan volcano, representative stratovolcano in rear side of northeast Japan arc. Most of the products are lavas, which are divided into two groups by geomorphologic and geologic features. The former (Gassan lower lavas) is composed of relatively thin and fluidal lavas, whose original geomorphology remains a little, while the latter (Gassan upper lavas) is composed of relatively thick and viscous lavas, whose original geomorphology is moderately preserved. Based on geologic features, the upper lavas can be further divided into Gassan upper north lavas and upper summit lavas in ascending order. After the formation of the thick lavas, horse-shoe shaped caldera was formed by the instability of the edifice, probably triggered by fault activity. No evidence of post caldera activity inner part of it is observed. Based on K-Ar data, estimated age of Gassan lower lavas is ca. 0.75 to ca. 0.6 Ma, those of Gassan upper north and upper summit lavas are ca. 0.60 to ca. 0.55 Ma and ca. 0.55 to ca. 0.45 Ma. The eruption rate is estimated to be ca. 0.0004 km 3 /1000 years in Gassan lower lavas and ca. 0.02 km 3 /1000 years in Gassan upper summit lavas. These values are lower than the eruption rate of representative Japanese stratovolcanoes.
KeywordsStratovolcanoAndesitic LavaEvolution HistoryGassan VolcanoNE JapanK-Ar Age Dating
Moriya, I. (1983) Geomorphology of Japanese Volcanoes. Tokyo University Press, Tokyo, 135 p.
Ban, M. and Takaoka, N. (1995) Evolutionary History of the Nasu Volcano Group, Northeast Japan Arc. Journal of Mineralogy, Petrology and Economic Geology, 90, 195-214. https://doi.org/10.2465/ganko.90.195
Ban, M., Hayashi, S. and Takaoka, N. (2001) K-Ar Dating of the Chokai Volcano, Northeast Japan Arc: A Compound Volcano Composed of Continuously Established Three Stratovolcanoes. Bulletin of the Volcanological Society of Japan, 46, 317-333.
Ishizuka, Y. (1999) Eruptive History of Rishiri Volcano, Northern Hokkaido, Japan. Bulletin of the Volcanological Society of Japan, 44, 23-40.
Ban, M., Ohba, T. and Fujinawa, A. (2013) B0l: Active Volcanoes in Northeast Japan, 2013 IAVCEI Field Trip Guide. Bulletin of the Volcanological Society of Japan, 58, B1-1-B1-34.
Hayashi, S., Umeda, K., Ban, M., Sasaki, M., Yamamoto, M., Ohba, T., Akaishi, K. and Ohguchi, T. (1996) Temporal and Spatial Distribution of Quaternary Volcanoes, Northeastern Japan (1), Spreading of Volcanic Area toward Back-Arc Side. Volcanological Society of Japan Abstracts of the 1996 Meeting, 2, 88.
Umeda, K., Hayashi, S., Ban, M., Sasaki, M., Ohba, T. and Akaishi, K. (1999) Sequence of the Volcanism and Tectonics during the Last 2.0 Million Years along the Volcanic Front in Tohoku District, NE Japan. Bulletin of the Volcanological Society of Japan, 44, 233-249.
Tamura, Y., Tatsumi, Y., Zhao, D., Kido, Y. and Shukuno, H. (2001) Distribution of Quaternary Volcanoes in the Northeast Japan Arc: Geologic and Geophysical Evidence of Hot Fingers in the Mantle Wedge. Proceedings of the Japan Academy, 77, 135-139. https://doi.org/10.2183/pjab.77.135
Kondo, H., Nakeko, K. and Tanaka, K. (1998) Characterization of Spatial and Temporal Distribution of Volcanoes since 14 Ma in the Northeast Japan Arc. Bulletin of the Volcanological Society of Japan, 43, 173-180.
Tamura, U., Tatsumi, Y., Zhao, D., Kido, Y. and Shukuno, H. (2002) Hot Fingers in the Mantle Wedge: New Insights into Magma Genesis in Subduction Zones. Earth and Planetary Science Letters, 197, 105-116. https://doi.org/10.1016/S0012-821X(02)00465-X
Nakajima, J., Matsuzawa, T., Hasegawa, A. and Zhao, D. (2001) Three-Dimensional Structure of Vp, Vs and Vp/Vs Beneath Northeastern Japan Arc: Implications for Arc Magmatism and Fluids. Journal of Geophysical Research, 106, 21843-21857. https://doi.org/10.1029/2000JB000008
Wang, Z. and Zhao, D. (2005) Seismic Imaging of the Entire Arc of Tohoku and Hokkaido in Japan Using P-Wave, S-Wave and SP Depth-Phase Data. Physics of the Earth and Planetary Interiors, 152, 144-162. https://doi.org/10.1016/j.pepi.2005.06.010
Huang, Z., Zhao, D. and Wang, L. (2011) Seismic Heterogeneity and Anisotropy of the Honshu Arc from the Japan Trench to the Japan Sea. Geophysical Journal International, 184, 1428-1444. https://doi.org/10.1111/j.1365-246X.2011.04934.x
Kuno, H. (1966) Lateral Variation of Basalt Magma Type across Continental Margins and Island Arcs. Bulletin of Volcanology, 29, 195-222. https://doi.org/10.1007/BF02597153
Kawano, Y., Yagi, K. and Aoki, K. (1961) Petrography and Petrochemistry of the Volcanic Rocks of Quaternary Volcanoes of Northeastern Japan. Science Reports of Tohoku University Ser III, 7, 1-46.
Sakuyama, M. and Nesbitt, R.W. (1986) Geochemistry of the Quaternary Volcanic Rocks of the Northeast Japan Arc. Journal of Volcanology and Geothermal Research, 29, 413-450. https://doi.org/10.1016/0377-0273(86)90053-3
Nakagawa, M., Shimotori, H. and Yoshida, T. (1988) Across-Arc Compositional Variation of the Quaternary Basaltic Rocks from the Northeast Japan Arc. Journal of Mineralogy, Petrology and Economic Geology, 83, 9-25. https://doi.org/10.2465/ganko.83.9
Tatsumi, Y., Sakuyama, M., Fukuyama, H. and Kushiro, I. (1983) Generation of Arc Magmas and Thermal Structure of the Mantle Wedge in Subduction Zones. Journal of Geophysical Research, 88, 5815-5825. https://doi.org/10.1029/JB088iB07p05815
Tatsumi, Y. and Eggins, S. (1995) Subduction Zone Magmatism. Blackwell, Oxford, 211 p.
Inoue, K. and Ban, M. (1996) Petrology of Younger Stage Lavas from the Gassan Volcano, Northeastern Japan. Journal of Mineralogy, Petrology and Economic Geology, 91, 33-47. https://doi.org/10.2465/ganko.91.33
Nakazato, H., Oba, T. and Itaya, T. (1996) The Geology and K-Ar Ages of the Gassan Volcano, Northeast Japan. Journal of Mineralogy, Petrology and Economic Geology, 91, 1-10. https://doi.org/10.2465/ganko.91.1
Ban (2005) Gassan. In: Koike, K., Tamura, T., Chinzei, K. and Miyagi, T., Eds., Regional Geomorphology of the Japanese Islands, Vol. 3 Geomorphology of Tohoku Region, University of Tokyo Press, Tokyo, 274-276.
Bacon, C.R. (1986) Magmatic Inclusions in Silicic and Intermediate Volcanic Rocks. Journal of Geophysical Research, 91, 6091-6112. https://doi.org/10.1029/JB091iB06p06091
Nagao, K., Nishido, H., Itaya, T. and Ogata, K. (1984) An Age Determination by K-Ar Method. Bulletin of the Hiruzen Research Institute, Okayama University of Science, 9, 19-38.
Nagao, K. and Itaya, T. (1988) K-Ar Age Determination. Memoirs of the Geological Society of Japan, 29, 5-21.
Itaya, T., Nagao, K., Inoue, K., Honjou, Y., Okada, T. and Ogata, A. (1991) Argon Isotope Analysis by a Newly Developed Mass Spectrometric System for K-Ar Dating. Mineral Journal, 15, 203-221. https://doi.org/10.2465/minerj.15.203
Yagi, K. (2006) Manual of Mineral Separation for K-Ar Dating. Engineering Geology of Japan, 0 (The Special Issue of 10th Anniversary of Hiruzen Institute for Geology and Chronology), 19-25.
Steiger, R. and Jager, E. (1977) Subcommission on Geochronology Convention on the Use of Decay Constants in Geo- and Cosmochronology. Earth and Planetary Science Letters, 36, 359-362. https://doi.org/10.1016/0012-821X(77)90060-7
Kaneko, T., Shimizu, S. and Itaya, T. (1989). K-Ar Chronological Study of the Quaternary Volcanic Activity in Shin-Etsu Highland. Journal of Mineralogy, Petrology and Economic Geology, 84, 211-225. https://doi.org/10.2465/ganko.84.211
Suzuki, Y., Ikeda, Y., Watanabe, M., Sugai, T. and Yonekura, N. (1989) Holocene Activity of the Eastern Boundary Gault of the Shonai Plain, Northeast Japan, and Its Implications for the Shonai Earthquake of 1894-Excavation of the Kannonji Fault. Zisin (Journal of the Seismological Society of Japan), 42, 151-159.
The Headquarters for Earthquake Research Promotion (2009) Partly Revision of Long-Term Evaluation of the Shonai-Tohen Fault Zone, Earthquake Survey Committee, Ministry of Education and Technology Japan. 41 p.
Matsuda, T., Ban, M. and Ohba, Y. (1997) Petrological Characteristics of Two Types of Inclusions and Their Host Rocks from the Yudonosan Volcano, Southern Part of the Chokai Zone, Northeast Japan. Journal of Mineralogy, Petrology and Economic Geology, 92, 245-259. https://doi.org/10.2465/ganko.92.245