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首页> 外文期刊>Contributions to Mineralogy and Petrology >Carbonatite melt inclusions in coexisting magnetite, apatite and monticellite in Kerimasi calciocarbonatite, Tanzania: melt evolution and petrogenesis
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Carbonatite melt inclusions in coexisting magnetite, apatite and monticellite in Kerimasi calciocarbonatite, Tanzania: melt evolution and petrogenesis

机译:坦桑尼亚Kerimasi钙碳酸盐岩中磁铁矿,磷灰石和蒙脱石共存的碳酸盐岩熔体包裹体:熔岩演化和成岩作用

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摘要

Kerimasi calciocarbonatite consists principally of calcite together with lesser apatite, magnetite, and monticellite. Calcite hosts fluid and S-bearing Na–K–Ca-carbonate inclusions. Carbonatite melt and fluid inclusions occur in apatite and magnetite, and silicate melt inclusions in magnetite. This study presents statistically significant compositional data for quenched S- and P-bearing, Ca-alkali-rich carbonatite melt inclusions in magnetite and apatite. Magnetite-hosted silicate melts are peralkaline with normative sodium-metasilicate. On the basis of our microthermometric results on apatite-hosted melt inclusions and forsterite–monticellite phase relationships, temperatures of the early stage of magma evolution are estimated to be 900–1,000°C. At this time three immiscible liquid phases coexisted: (1) a Ca-rich, P-, S- and alkali-bearing carbonatite melt, (2) a Mg- and Fe-rich, peralkaline silicate melt, and (3) a C–O–H–S-alkali fluid. During the development of coexisting carbonatite and silicate melts, the Si/Al and Mg/Fe ratio of the silicate melt decreased with contemporaneous increase in alkalis due to olivine fractionation, whereas the alkali content of the carbonatite melt increased with concomitant decrease in CaO resulting from calcite fractionation. Overall the peralkalinity of the bulk composition of the immiscible melts increased, resulting in a decrease in the size of the miscibility gap in the pseudoquaternary system studied. Inclusion data indicate the formation of a carbonatite magma that is extremely enriched in alkalis with a composition similar to that of Oldoinyo Lengai natrocarbonatite. In contrast to the bulk compositions of calciocarbonatite rocks, the melt inclusions investigated contain significant amount of alkalis (Na2O + K2O) that is at least 5–10 wt%. The compositions of carbonatite melt inclusions are considered as being better representatives of parental magma composition than those of any bulk rock.
机译:Kerimasi钙碳沸石主要由方解石以及少量的磷灰石,磁铁矿和蒙脱石组成。方解石含有流体和含S的Na–K–Ca碳酸盐夹杂物。碳酸盐熔体和流体包裹体存在于磷灰石和磁铁矿中,而硅酸盐熔体包裹体存在于磁铁矿中。这项研究为磁铁矿和磷灰石中淬火的含S和P的富含Ca碱的碳酸盐熔岩夹杂物提供了具有统计意义的成分数据。磁铁矿承载的硅酸盐熔体为高碱性碱和标准的偏硅酸钠。根据我们对磷灰石包裹的熔体包裹体和镁橄榄石-蒙脱石相关系的显微热分析结果,岩浆演化早期的温度估计为900-1,000°C。此时,三个不混溶的液相共存:(1)富含Ca,P,S和碱的碳酸盐熔岩;(2)富含Mg和Fe的高碱性硅酸盐熔体;和(3)C –O–H–S碱液。在共存的碳酸盐岩和硅酸盐熔体的发展过程中,由于橄榄石分馏,硅酸盐熔体的Si / Al和Mg / Fe比随着碱的同时增加而降低,而碳酸盐熔体的碱含量随着CaO的降低而增加。方解石分馏。总的来说,不混溶的熔体的整体组成的碱度增加,导致在拟四元体系中混溶间隙的尺寸减小。夹杂物数据表明形成了一个碳酸盐岩浆,该岩浆中的碱含量极为丰富,其组成与Oldoinyo Lengai纳碳酸盐岩相似。与钙碳岩岩石的整体组成相比,所研究的熔体包裹体含有大量的碱(Na 2 O + K 2 O),其含量至少为5-10 wt %。碳酸盐岩熔体包裹体的成分被认为比任何块状岩石更好地代表了母岩浆的成分。

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