学部生

≪4年生≫

S15S008 伊藤 隆

S15S02   菊井 偉織

S15S030 金城 真奈未

S15S047 髙野 愛

S15S072 丸田 将也

S15S083 湯浅 愛美

大学院生

IMG_0227IMG_1193

IMG_1203IMG_1205IMG_1204

S16SM04 水口 まりや (M2) 火山ガラス-酸性泉系相互作用に関する実験的研究

S17SM05 西居 俊基 (M1) 

S17SM06 錦郡 雄基 (M1)

鉱物の物理化学的性質

地球科学の研究では,地球を構成する最小の単位「鉱物」を詳細に研究することから始まります.そのため産出希な鉱物の物理化学的性質やすでに知られている鉱物でも希に特別な性質を有することがあります.このような鉱物を対象とし紹介する研究をしています.特に,ヒスイ輝石岩(下左の写真)に伴う鉱物,例えばストロンチウムを含む鉱物(stronalcite)の研究,等軸晶系でも光学異常を示す鉱物、紫外線で携行する鉱物(下右の写真:chabazite-Ca)の性質調べる,更に岡山県布賀鉱山に産する多数のホウ酸塩鉱物の物理化学的性質などを調べています.

 

大佐山ヒスイ

 

このテーマに関係する主な参考文献

* S. Kobayashi and T. Shoji (1983) Infrared analysis of the grossular-hydrogrossular series. Mineralogical Journal, 11(7), 331-343.

* S. Kobayashi and T. Shoji (1984) Infrared analysis of the grossular-hydrogrossular series with a small amount of andradite molecule. Mineralogical Journal, 12(3), 122-136.

* S. Kobayashi and T. Shoji (1987) Infrared spectra and cell dimension of hydrothermally synthesized grandite – hydrograndite series. Mineralogical Journal, 13(8), 490-499.

* T. Shoji、S. Kobayashi (1992) An electric conductivity method for determining the solubilities of solid compounds in hydrothermal solutions. J. Faculty of Engin., Univ. Tokyo (B), 41(4), 603–618.

* I. Kusachi, C. Henmi and S. Kobayashi (1994) Chemical composition of bakerite from Fuka, Okayama Prefecture, Japan. Mineralogical Journal, 17(3), 111-117.

* I. Kusachi, C. Henmi and S. Kobayashi (1995) Takedaite, a new mineral from Fuka, Okayama Prefecture, Japan. Mineralogical Magazine, 59, 549-552.

* I. Kusachi, C. Henmi and S. Kobayashi (1995) Frolovite from Fuka, Okayama Prefecture, Japan. Mineralogical Journal, 17(7), 330-337.

* I. Kusachi, C. Henmi and S. Kobayashi (1996) Johnbaumite from Fuka, Okayama Prefecture, Japan. Mineralogical Journal, 18(2), 60-66.

* I. Kusachi, Y. Takechi, C. Henmi and S. Kobayashi (1997) Borcarite from Fuka, Okayama Prefecture, Japan. Mineralogical Journal, 19(3), 115-122.

* I. Kusachi, C. Henmi and S. Kobayashi (1997) New data on sibirskite from Fuka, Okayama, Prefecture, Japan. Mineralogical Journal, 19(3), 109-114.

* I. Kusachi, Y. Takechi, C. Henmi and S. Kobayashi (1998) Parasibirskite, a new mineral from Fuka, Okayama Prefecture, Japan. Mineralogical Magazine, 62(4), 521-525.

* I. Kusachi, I. Takechi, S. Kobayashi, Y. Nakamuta, K-H. Lee and S. Motomizu (1999) Hexahydroborite from Fuka, Okayama Prefecture, Japan. Mineralogical Journal, 21(1), 9-14.

* 草地功、小林祥一、逸見千代子、武智泰史 (1999) CaO-B2O3-H2O系ホウ酸塩鉱物:特に岡山県備中町布賀産の例について. 鉱物学雑誌、28(2)、41-46.

* I. Kusachi, K. Shirage, S. Kobayashi, J. Yamakawa and I. Takechi (2000) Uralborite from Fuka, Okayama Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 96(1), 29-33.

* K. Shirage, I. Kusachi, M. Nishimura, KS. Kobayashi and J. Yamakawa (2001) Baghdadite from Fuka, Okayama Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 96(2), 43-47.

* I. Kusachi, M. Nishimura, K. Shirage, S. Kobayashi and J. Yamakawa (2001) Kinoite from Fuka, Okayama Prefecture, Japan. Journal of Mineralogical and Petrological Sciences,96(1), 29-33.

* K. Shiraga, I. Kusachi, S. Kobayashi and I. Takechi (2002) Cahnite from Fuka, Okayama Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 97(2), 70-73.

* M. Ohnishi, S. Kobayashi and I. Kusachi (2002) Ktenasite from the Hirao mine at Minoo, Osaka, Japan. Journal of Mineralogical and Petrological Sciences, 97 (Sueno issue), 185-189.

* I. Miyazaki, S. Ohori, S. Kishi, S. Kobayashi and I. Kusachi (2002) Lindgrenite from the Sansei mine, Nara Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 97 (Sueno issue), 207-210.

* M. Ohnishi, S. Kobayashi, I. Kusachi, J. Yamakawa and M. Shiragami (2004) Ramsbeckite from the Hirao mine at Minoo, Osaka, Japan. Journal of Mineralogical and Petrogical Science 99 (1), 19-24.

* 大前暁政・草地 功・小林祥一 (2004) 岡山県布賀のモンゾ閃緑岩に伴うゼノリス中のケルスート閃石およびパーガス閃石. 岩石鉱物科学 33、 46-50.

* I. Kusachi, S. Kobayashi, M. Tanabe, S. Kishi and J. Yamakawa (2004) Inyoite from Fuka, Okayama Prefecture, Japan. Journal of Mineralogical and Petrogical Science, 99 (2), 67-71.

* M. Xue, R. Chitrakar, K. Sakane, K. Ooi, S. Kobayashi, M. Ohnishi and A. Doi (2004) Synthesis of ktenasite, a double hydroxide of zinc and copper, and its intercalation reaction. Journal of Solid State Chemistry, 177(4-5), 1624-1630.

* M. Ohnishi, I. Kusachi, S. Kobayashi and J. Yamakawa (2007) Mineral chemistry of schlenbergite and its Zn-dominant analogue from the Hirao mine, Osaka, Japan. Journal of Mineralogical and Petrological Sciences, 102(4), 233-239.

* M. Ohnishi, I. Kusachi, S. Kobayashi, J. Yamakawa, M. Tanabe, S. Kishi and T. Yasuda (2007) Numanoite, Ca4CuB4O6(OH)6(CO3)2, a new mineral species, the Cu analogue of borcarite from the Fuka mine, Okayama Prefecture, Japan. Canadian Mineralogist, 45(2), 307-315.

* M. Ohnishi, I. Kusachi and S. Kobayashi (2007) Osakaite, Zn4SO4(OH)6・5H2O mineral spacies from the Hirao mine, Osaka, Japan. Canadian Mineralogist, 45, 1511-1517.

* 大西政之, 草地功, 小林祥一, 藤原由輝, 西田勝一 (2007) 山口県大和鉱山産プライジンガ一石.岩石鉱物科学36,6-65.

* Aierken Sidike, Alifu Sawuti, Xiang-Ming Wang, Heng-Jiang Zhu, S. Kobayashi, 1. Kusachi and N. Yamashita (2007) Fine structure in photoluminescence spectrum of S2 center in sodalite. Physics and Chemistry of Minerals, 34, 447-484.

* l. Kusachi, N. Shitaishi, K. Shimada, M. Ohnishi and S. Kobayashi (2008) C03-rich charlesite from the Fuka mine, Okayama Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 103, 47-51.

* Aierken Sidike, S.Kobayashi, Heng-Jiang Zhu, I. Kusachi and N. Yamashita (2010) Photoluminescence of baratovite and katayamalite. Physics and Chemistry of Minerals, 39(6), 465-470.

* Aierkeo Sidike, Nuerrula Jilili, S. Kobayashi, K. Atobe and Nobuhiko Yamashita (2010) Photoluminescence properties of anthophyllite. Physics and Chemistry of Minerals, 37, 83-89.

* S. Kobayashi, Aierken Sidike, N. Yamashita (2012) Luminescence spectra of chabazite-Ca, a zeolite mineral. Physics and Chemistry of Minerals, 39(6), 465-470.

* 大西政之・下林典正・小林祥一(2012)島根県銅ヶ丸鉱山および滋賀県御池鉱山産ハイドロウッドワード石の化学組成.岩石鉱物科学、41(4), 122-128.

* I.Kusahi, S.Kobayashi, Y.Takechi, Y.Nakamuta, T.Nagase, K.Yokoyama, K.Momma, R.Miyawaki, M.Shigeoka and S.Matsubara (2013) Shimazakiite-4M and shimazakiite-4O, Ca2B2O5, two polytypes of a new mineral from Fuka, Okayama Prefecture, Japan. Mineralogical Magazine, 77(1), 93-105.

* Ohnishi, M., Shimobayashi, N., Kishi, S., Tanabe, M. and Kobayashi, S. (2013) Talmessite from the Uriya deposit at the Kiura mining area, Oita Prefecture, Japan. Journal of Mineralogical and Petrological Sciences, 108, 116-120.

* 小林祥一 (2013) 鉱物資源とその産状. 耐火物, 65(4), 153-160.

* S. Kobayashi, T. Ando, A. Kanayama, M. Tanabe, S. Kishi, and I. Kusachi (2014) Calciborite from the Fuka mine, Okayama Prefecture, Japan. Journal of Mineralogical and Petrological Science, 109, 13 – 17.

* T. Ando, A. Kanayama, S. Kobayashi, R. Miyawaki, S. Kishi, M. Tanabe and I. Kusachi (2015) Roweite from the Fuka mine, Okayama Prefecture, Japan. Journal of Mineralogical and Petrological Science, 110, 29 – 34.

* Kobayashi, S., Ando, T., Tanabe, M., Kishi, S. asn Kusachi, I. (2017) Priceite from the Fuka mine, Okayama Prefecture, Japan. Journal of Mineralogical and Petrological Science, 112, 20 – 24.

* Hayashi, A., Mommma, K., Miyawaki, R., Tanabe, M., Kishi, S., Kobayashi, S. and Kusachi, I. (2017) Kurchatovite from Fuka mine, Okayama Prefecture, Japan. Journal of Mineralogical and Petrological Science, 112, 159 – 165.

交代変質作用

マグマから最初に生成した岩石鉱物は,その後の熱水やマグマ(下1列目の写真)の働きで生まれたときとは異なる物質に変わることはしばしば認められています.その原因は,元々の岩石鉱物を構成している化学組成と,熱水などに含まれている組成とが入れ替わることが主な原因で,これを交代変質作用と言います.それは,新たに生成する鉱物の結晶構造からの制約,熱水-岩石鉱物系での物質の入替を制限するー例えば鉱物に留まりたいか移動したいかを決めるー性質によります.本研究室では,例えばニュージーランドのローディング川の名前に由来するローディンガイト(rodingite)の生成プロセス(下2列目の写真)を対象に詳細に研究し,その後の研究でこのプロセスはヒスイ輝石岩(「鉱物の物理化学的性質」下左の写真)の成因にも関係することがわかってきました.

 

IMG_1049台湾地熱 IMG_1037SongNTU

rodingite2   rodingite285

このテーマに関係する主な参考文献

* S. Kobayashi, H. Miyake and T. Shoji (1987) A jadeite rock from Oosa-cho, Okayama Prefecture south-western Japan. Mineralogical Journal, 13(6), 314-327.

* T. Shoji and S. Kobayashi (1988) Fluid inclusions found in jadeite and stronalsite, and a comment on the jadeite-analcime boundary. Journal of Mineralogy, Petrology and Economic Geology, 83 (1), 1-8.

* S. Kobayashi and T. Shoji (1988) Metasomatic process in the formation of rodingite in Boso Peninsula, Chiba,Japan. Journal of Mineralogy, Petrology and Economic Geology, 83 (12), 514-526.

* 正路徹也、小林祥一、孟憲国、金田博彰 (1996) 地形図のない地域におけるGPSの有効性. 資源と素材、112、683-687.

* T. Shoji and S. Kobayashi (1997) Solubility measurement by an electric conductivity method. Proceedings of the 33rd Societe Internationale des Tecnigues Hydrothermales, 118-121.

* S. Kobayashi, T. Shoji, X. Meng, J. Ding and H. Kaneda (1997) Rodingite from Ailaoshan ophiolite zone, Yunnan Province, China. Journal of Mineralogy, Petrology and Economic Geology, 92(11), 445-453.

* 前暁政・草地 功・小林祥一 (2002) 岡山県布賀に産する高圧型スカルンを形成した火成岩類の岩石学的研究. 岩石鉱物科学、31(1)、1-14.

* K.N. Prakash Narasimha, S. Kobayashi, T. Shoji, M. Sasaki and M.S. Sethumadhav (2009) XRD, EPMA and FTIR Studies on garnet from Bettadabidu, Sargur area, Karnataka, India. .Journal of Applied Geochemistry, 11(1) 1-11.

* S. Kobayashi and H. Kaneda (2010) Rodingite with T- and Cr-rich vesuvianite from the Sartuohai chromium deposit, Xinjiang, China. Journal of Mineralogical and Petrological Sciences, 105, 112-122.

* Shoichi KOBAYASHI, Ritsuro MIYAWAKI, Koichi MOMMA, Akiko FUJISAWA and Hiroaki KANEDA (2013) Anisotropic garnet from the Yamansu ore deposit, Xingiang, China. Journal of Mineralogical and Petrological Sciences, 108, 245-254.

* Kobayashi, S. (2015) Mineral resource and its geological occurrence. Journal of the Technical Association of Refractories, Japan, 35(4), 222-230.

地球科学研究室の紹介

 

研究テーマ

HuttonUnc Rio山261

私たちの研究は野外での調査が基本で、

持ち帰った試料から様々な地球の営みを理解することを目指しています.

たとえば,