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硅酸盐-盐(硫酸盐)流体不混溶:蒙古南部Mushugai-Khuduk含火成碳酸岩杂岩体矿物中的熔体包裹体研究
作者姓名:IrinaA.Andreeva  Vyacheslav  I.Kovalenko  Vladimir  B.Naumov
作者单位:Institute of Geology of Ore Deposit Petrography,Mineralogy,and Geochemistry,Russian Academy of Sciences,Staromonetnyi per.35,Moscow 109017,Russia,Institute of Geology of Ore Deposit,Petrography,Mineralogy,and Geochemistry,Russian Academy of Sciences,Staromonetnyi per.35,Moscow 109017,Russia,Vernadsky Institute of Geochemistry and Analytical Chemistry,Russian Academy of Sciences,Kosygina 19,Moscow 117334,Rudssia
基金项目:This study was financially supported by the Russian Foundation for Basic Research, project nos.(05-05-64055, 05-05-62056, 07-05-00497).
摘    要:Crystalline and melt inclusions were studied in garnet,diopside,potassium feldspar,and sphene from the garnet syenite porphyry of the carbonatite-bearing complex Mushugai-Khuduk,southern Mongolia.Phlogopite,clinopyroxene,albite,potassium feldspar,spheric,wollastonite,magnetite,Ca and Sr sulfates,fluorite,and apatite were identified among the crystalline inclusions. The melt inclusions were homogenized at 1010~1080℃and analyzed on an electron microprobe.Silicate,salt,and combined silicate- salt melt inclusions were found.Silicate melts show considerable variations in SiO_2 concentration(56 to 66wt% ),high Na_2O K_2O (up to 17wt% ),and elevated Zr,F,and C1 contents.In terms of bulk rock chemistry,the silicate melts are alkali syenites.During thermometric experiments,salt melt inclusions quenched into homogeneous glasses of predominantly sulfate compositions containing no more than 1.3wt% SiO_2.These melts are enriched in alkalis,Ba,Sr,P,F,and C1.The investigation of the silicate and salt melt inclusions in minerals of the garnet syenite porphyries indicate that these rocks were formed under influence of the processes of crystallization differentiation and magma separation into immiscible silicate and salt(sulfate)liquids.

关 键 词:硅酸盐-盐  流体不混溶  火成碳酸岩  杂岩体  矿物  熔体包裹体
文章编号:1000-0569/2007/023(01)-0073-82
修稿时间:2006-07-07

Silicate-salt(sulfate) liquid immiscibility: a study of melt inclusions in minerals of the Mushugai-Khuduk carbonatite-bearing complex ( southern Mongolia )
IrinaA.Andreeva Vyacheslav I.Kovalenko Vladimir B.Naumov.Silicate-salt(sulfate) liquid immiscibility: a study of melt inclusions in minerals of the Mushugai-Khuduk carbonatite-bearing complex ( southern Mongolia )[J].Acta Petrologica Sinica,2007,23(1):73-82.
Authors:Irina A Andreev  Vyacheslav I Kovalenko  Vladimir B Naumov
Institution:1. Institute of Geology of Ore Deposit, Petrography, Mineralogy, and Geochemistry, Russian Academy of Sciences, Staromonetnyi per. 35,Moscow 109017, Russia
2. Vernadsky Institute of Geochemistry and Analytical Chemistry, Russian Academy of Sciences, Kosygina 19, Moscow 117334, Russia
Abstract:Crystalline and melt inclusions were studied in garnet, diopside, potassium feldspar, and sphene from the garnet syenite porphyry of the carbonatite-bearing complex Mushugai-Khuduk, southern Mongolia. Phlogopite, clinopyroxene, albite, potassium feldspar, sphene, wollastonite, magnetite, Ca and Sr sulfates, fluorite, and apatite were identified among the crystalline inclusions.The melt inclusions were homogenized at 1010 ~ 1080℃ and analyzed on an electron microprobe. Silicate, salt, and combined silicatesalt melt inclusions were found. Silicate melts show considerable variations in SiO2 concentration (56 to 66wt% ), high Na2O + K2O(up to 17wt% ), and elevated Zr, F, and Cl contents. In terms of bulk rock chemistry, the silicate melts are alkali syenites. During thermometric experiments, salt melt inclusions quenched into homogeneous glasses of predominantly sulfate compositions containing no more than 1.3wt% SiO2. These melts are enriched in alkalis, Ba, Sr, P, F, and Cl. The investigation of the silicate and salt melt inclusions in minerals of the garnet syenite porphyries indicate that these rocks were formed under influence of the processes of crystallization differentiation and magma separation into immiscible silicate and salt (sulfate)liquids.
Keywords:Alkaline rocks  Carbonatites  Silicate and salt melt inclusions  Crystal fractionation  Liquid immiscibility
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