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首页> 外文期刊>European journal of mineralogy >Geochemistry of mafic phenocrysts from alkaline lamprophyres of the Spanish Central System: implications on crystal fractionation, magma mixing and xenoliths entrapment within deep magma chambers
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Geochemistry of mafic phenocrysts from alkaline lamprophyres of the Spanish Central System: implications on crystal fractionation, magma mixing and xenoliths entrapment within deep magma chambers

机译:来自西班牙中央系统碱性煌斑岩的镁铁质晶状体的地球化学:对深部岩浆室内结晶分级,岩浆混合和异种岩截留的影响

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摘要

The Permian alkaline lamprophyres from the Spanish Central System (SCS) are highly porphyritic rocks which carry a heterogeneous population of clinopyroxene and kaersutite zoned phernocrysts. Clinopyroxene phenocrysts may show 1) normal zoning (Cpx-I), 2) reverse zoning with Fe-rich green cores (Cpx-II), and 3) reverse zoning with colourless A1-poor, silica-rich cores (Cpx-III). Kaersutite phenocrysts also show a slight reverse zoning. Major and trace element composition of Cpx-I suggests that their compositional variation is related to a crystal fractionation process from melts similar to the host lamprophyres. The Cpx-II cores represent crystallization from highly evolved melts (low Mg-Cr contents and incompatible element enrichment), genetically related with the SCS alkaline magmatism, and the growth or surrounding Mg-rich inner rims points to a magma mixing process. The major and trace element composition of Cpx-III cores supports derivation from a magma which has fractionated plagioclase. This characteristic, together with their similarities when compared to clinopyroxenes from charnockite xenoliths, suggests that they might be xenocrysts from deep calc-alkaline cumulates. The composition of melts in equilibrium with clinopyroxene and amphibole phenocrysts supports a model in which Cpx-II and Cpx-III cores would have been incorporated into a more primitive lamprophyric magma stagnated at lower crustal levels. The low pressure composition of all phenocryst outer rims indicates that they crystallised directly from the host alkaline magma at their subvolcanic emplacement levels.
机译:西班牙中央系统(SCS)的二叠纪碱性煌斑岩是高度斑状的岩石,携带着异质的斜辉石和钾长石分区的圆晶。 Clinopyroxene phenocrysts可能显示1)正常分区(Cpx-I),2)富铁绿芯(Cpx-II)的反向分区和3)无色A1贫,富含二氧化硅的芯(Cpx-III)的反向分区。喀苏特斑晶也显示出轻微的反向区带。 Cpx-1的主要和微量元素组成表明,它们的组成变化与熔体的晶体分馏过程有关,该过程与宿主煌斑岩相似。 Cpx-II岩心代表了高度演化的熔体(低Mg-Cr含量和不相容元素富集)的结晶,这与SCS碱性岩浆作用在遗传上有关,富Mg的内缘的生长或周围指向岩浆混合过程。 Cpx-III岩心的主要元素和微量元素组成支持了具有分离斜长石的岩浆的衍生。这种特性,以及与镍锰矿异岩中的斜辉石相比较时的相似性,表明它们可能是深钙钙累积物的异晶。与斜环辉石和闪石隐晶相平衡的熔体组成支持了一个模型,其中Cpx-II和Cpx-III岩心将被并入停滞在较低地壳水平的更原始的火山岩浆。所有隐晶外缘的低压成分表明,它们直接在其次火山岩位处从宿主碱性岩浆中结晶出来。

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