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首页> 外文期刊>American Mineralogist >Origin and internal evolution of the Li-F-Be-B-P-bearing Pinilla de Fermoselle pegmatite (Central Iberian Zone, Zamora, Spain)
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Origin and internal evolution of the Li-F-Be-B-P-bearing Pinilla de Fermoselle pegmatite (Central Iberian Zone, Zamora, Spain)

机译:含Li-F-Be-B-P的Pinilla de Fermoselle伟晶岩的起源和内部演化(西班牙萨莫拉中部伊比利亚地区)

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摘要

The Li-F-Be-B-P bearing Pinilla de Fermoselle (PF) pegmatite occurs in the apical part of a leucogranite body. It shows a clear non-symmetrical vertical zoning from the contact with the leucogranite to a contact with the metamorphic country rocks. The pegmatitic facies evolve upward from (1) the undifferentiated Lower Border Zone (LBZ), with quartz, feldspars, muscovite, biotite, and black tourmaline, through (2) the Intermediate Zone (IZ), with quartz, muscovite, zinnwaldite, black tourmaline, and Fe-Mn phosphates, to (3) the highly evolved Upper Border Zone (UBZ), with quartz, albite, lepidolite, zinnwaldite, elbaite, and beryl. The composition of the pegmatite-forming minerals suggests that a residual melt become progressively enriched in F and Li until the crystallization of the apical UBZ, whereas P partitions in the melt only until the intermediate levels of differentiation attained in the IZ. Chemical variations in the mica and tourmaline as well as in the feldspar and Fe-Mn phosphate minerals are consistent with an internal evolution by crystal fractionation processes. A plausible model for the crystallization of the PF pegmatite involves a rapid, in situ, bottom-up crystallization from significantly undercooled liquids. The lack of metasomatic effects in the metamorphic host-rock and the estimated P content of the initial leucogranite melt suggest that the PF pegmatite mainly crystallized under closed system conditions.
机译:含Li-F-Be-B-P的Pinilla de Fermoselle(PF)伟晶岩 发生在白云石体的顶部。从与白垩岩的接触到变质的乡村岩石的接触,它显示出一个 清晰的非对称垂直分区。 古卷岩相向上演化来自(1)未分化的 下边界带(LBZ),具有石英,长石,白云母, 黑云母和黑色电气石,通过(2)中间 < / sup> Zone(IZ),以及石英,白云母,zinnwaldite,黑色电气石, 和Fe-Mn磷酸盐,以(3)高度演化的上边界 Zone(UBZ ),以及石英,钠长石,锂云母,锌正辉石,钠长石, 和绿柱石。形成伟晶石的矿物的组成 建议残余熔体逐渐富集在F和Li中,直到顶端UBZ结晶,而 P在熔体中分配,直到在IZ中达到中间的分化水平 为止。云母和电气石以及长石和Fe-Mn 磷酸盐矿物中的化学变化与晶体分馏过程的内部演化 一致。 PF伟晶岩的 结晶的合理模型涉及从显着过冷的液体中进行的快速,原位 自下而上结晶。 变质宿主岩 中的变质作用和初始白云石熔体的估计P含量 表明,PF伟晶岩主要在封闭的 系统条件下结晶。

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  • 来源
    《American Mineralogist》 |2005年第12期|00001887-00001899|共13页
  • 作者单位

    Departamento de Mineralogía y Petrología, Universidad del País Vasco UPV/EHU, P.O. Box. 644, E-48080 Bilbao, Spain;

    Departamento de Mineralogía y Petrología, Universidad del País Vasco UPV/EHU, P.O. Box. 644, E-48080 Bilbao, Spain;

    Departamento de Mineralogía y Petrología, Universidad del País Vasco UPV/EHU, P.O. Box. 644, E-48080 Bilbao, Spain;

    Departamento de Mineralogía y Petrología, Universidad de Granada, Fuentenueva s, E-18002 Granada, Spain;

    Laboratoire Cristallographie et Minéralogie, URA-067-Université Paul Sabatier, Allées Jules-Guesde 39, F-31400, Toulouse, France;

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