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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Mineralogy of primary carbonate-bearing hypabyssal kimberlite,Lac de Gras,Slave Province,Northwest Territories,Canada
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Mineralogy of primary carbonate-bearing hypabyssal kimberlite,Lac de Gras,Slave Province,Northwest Territories,Canada

机译:奴隶省拉克德格拉斯含碳酸盐的碳酸盐性海王星金伯利岩的矿物学,加拿大西北地区

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摘要

A suite of fresh,Late Cretaceous to Eocene hypabyssal kimberlites from the Lac de Gras field were studied in order to understand better carbonate,silicate and oxide paragenesis.The samples have excellent preservation of textures and primary mineralogy and are archetypal or Group 1 kimberlite.Five kimberlite localities are identified as calcite-bearing based on the presence of high Sr-Ba calcite as phenocrysts,microphenocrysts and in segregations.Three kimberlite localities are identified as dolomite-bearing based on the presence of mixed calcite-dolomite segregations containing oscillatory and banded textures of calcite-dolomite solid solution and dolomite (+-magnesite).Sr-Ba calcite are characterized by high X_(Ca) (>0.95) and are enriched in Sr (4900-11,100 ppm) and Ba (3200-14,200 ppm).The calcite-dolomite and dolomite-magnesite solid solution compositions span the X_(Ca) range from 0.42 to 0.95,and typically have Sr and Ba contents in the range of 1000-4000 ppm.The carbonate,silicate and oxide mineral compositions suggest that the origin of the calcite-bearing versus dolomite-bearing kimberlites studied is related to subtle differences in parent magma composition,in particular,the CO_2/H_2O ratio.Formation of the carbonates reflects the latter part of a protracted magmatic crystallization sequence,in which Sr-Ba calcite precipitates from an evolved kimberlite melt.Subsequently,calcite-dolomite solid solution and dolomite is precipitated from localized,Mg-rich carbonate fluids at relatively high temperatures (higher than serpentine stability).
机译:为了了解碳酸盐,硅酸盐和氧化物的共生作用,研究了一组来自Lac de Gras田的新鲜,晚白垩世至始新世的海底斜纹金伯岩,这些样品具有很好的质地和主要矿物学特征,是原型或第1组金伯利岩.5根据高Sr-Ba方解石,细晶球和偏析物的存在,将金伯利岩地区确定为方解石。基于混有方解石和条带状结构的方解石-白云石混合偏析的存在,将金伯利岩的三个地区确定为方解石方解石-白云石固溶体和白云石(+-菱镁矿).Sr-Ba方解石的特征是X_(Ca)(> 0.95)高,并富含Sr(4900-11,100 ppm)和Ba(3200-14,200 ppm)。方解石-白云石和白云石-菱镁矿固溶体成分的X_(Ca)范围为0.42至0.95,并且Sr和Ba含量通常在1000-4000 ppm范围内。 te和氧化物矿物成分表明,所研究的方解石和白云石的金伯利岩的成因与母岩浆成分的细微差异有关,特别是CO_2 / H_2O的比例。碳酸盐的形成反映了长时期的后期岩浆结晶序列,其中Sr-Ba方解石从演化的金伯利岩熔体中沉淀。随后,方解石-白云石固溶体和白云石在相对较高的温度(高于蛇纹石稳定性)下从局部富Mg碳酸盐流体中沉淀出来。

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