Stable isotope (C, O, H) characteristics and genesis of the Tazheran brucite marbles and skarns, Olkhon region, Russia

被引:16
作者
Doroshkevich, Anna [1 ,2 ]
Sklyarov, Eugene [3 ,4 ]
Starikova, Anastasia [1 ,5 ]
Vasiliev, Vladimir [2 ]
Ripp, German [2 ]
Izbrodin, Ivan [2 ]
Posokhov, Viktor [2 ]
机构
[1] Russian Acad Sci, Siberian Branch, Sobolev Inst Geol & Mineral, Akad Koptyuga 3, Novosibirskpr 630090, Russia
[2] RAS, SB, Geol Inst, Sakhyanovoy Str 6a, Ulan Ude 670047, Russia
[3] RAS, SB, Inst Earths Crust, Lermontova Str 128, Irkutsk 664033, Russia
[4] Far Eastern Fed Univ, 8 Sukhanov St, Vladivostok 690950, Russia
[5] Novosibirsk State Univ, Pirogova Str 1, Novosibirsk 630090, Russia
关键词
Brucite marble; Skam; Tazheran gabbro-syenite massif; Olkhon collision system; Stable isotopes; Fluid-rock interaction; Decarbonation; Fluid depleted in C-13; CONTACT-METAMORPHISM; SELF-ORGANIZATION; BAIKAL REGION; WALL ROCK; FRACTIONATION; OXYGEN; MINERALS; INTRUSION; CARBONATE; SYSTEM;
D O I
10.1007/s00710-016-0477-8
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Stable isotope compositions are examined for brucite marble and Mg-skarn that occur in the southern part of the Tazheran massif, Olkhon region, Russia. Brucite marble exhibits a narrow range in delta O-18 of +23.3 to +26.2 parts per thousand and shows carbon isotope depletion of -1.9 to -4.4 aEuro degrees) as compared with the country dolomite isotope compositions (+2.0 to +2.4 parts per thousand) which is explained by both decarbonation processes and participation of fluids depleted in C-13. The emplacement of brucite marble was accompanied by the formation of endo- and exoskarn at the contact between syenite and brucite marble. delta O-18 profiles across the contact show a typical decrease towards the syenite side interpreted as the result of fluid/rock interaction and influx of magmatic fluids. Finally, we discuss the mechanisms of brucite marble emplacement and consider three possible ways of producing these rocks: (1) injection of dolomite with subsequent transformation to periclase marble and then to brucite marble; (2) injection of periclase marble with a following replacement of periclase by brucite or injection of brucite marble; (3) crustal water-rich carbonate melt. We favor models 2 and 3 and discuss their strengths and weaknesses.
引用
收藏
页码:399 / 416
页数:18
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