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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Zr-LREE rich minerals in residual peraluminous granulites,another factor in the origin of low Zr-LREE granitic melts?
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Zr-LREE rich minerals in residual peraluminous granulites,another factor in the origin of low Zr-LREE granitic melts?

机译:残留的高铝质花岗岩中富含Zr-LREE的矿物,是低Zr-LREE花岗岩熔体起源的另一个因素吗?

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摘要

There is a significant enrichment in some trace elements in the major residual minerals of peraluminous granulite xenoliths from the lower crust.Those trace elements are released from the breakdown of accessory phases at high-T granulite-facies conditions(>850 deg C).Around 10-35% of Zr is hosted in granulite rutile and garnet,whereas,the entire LREE-Eu budget is controlled by feldspar.The Zr-and REE-compatible behaviour of the major granulite phases,combined with the scarcity of accessory phases,which are mostly included in major granulite minerals,leads to a disequilibrium in accessory dissolution in the peraluminous partial melts.Thus the melt extracts less Zr and LREE and,consequently,generates the false impression of having lower-T when applying current accessory phase dissolution models.
机译:下地壳的高铝质花岗石异岩中的主要残留矿物中的某些微量元素含量显着增加,这些微量元素是在高T粒岩相条件下(> 850℃)从副相的分解中释放出来的。 10-35%的Zr驻留在花岗石金红石和石榴石中,而整个LREE-Eu预算受长石控制。主要花岗石相的Zr-和REE相容性行为,以及伴随相的稀缺性,大部分的主要花岗石矿物中都含有这种元素,导致在过铝的部分熔体中辅助溶出不平衡。因此,在应用当前的辅助相溶出模型时,熔体中的Zr和LREE较少,因此产生了较低T的假象。

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