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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Magmatic unmixing in spinel from late Precambrian concentrically-zoned mafic-ultramafic intrusions, Eastern Desert, Egypt
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Magmatic unmixing in spinel from late Precambrian concentrically-zoned mafic-ultramafic intrusions, Eastern Desert, Egypt

机译:埃及东部沙漠前寒武纪晚期同心地带的镁铁-超镁铁侵入体的尖晶石岩浆解体

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摘要

Spinel is widespread in the ultramafic core rocks of zoned late Precambrian mafic-ultramafic complexes from the Eastern Desert of Egypt. These complexes; Gabbro Akarem, Genina Gharbia and Abu Hamamid are Precambrian analogues of Alaskan-type complexes, they are not metamorphosed although weakly altered. Each intrusion is composed of a predotite core enveloped by pyroxenites and gabbros at the margin. Silicate mineralogy and chemistry suggest formation by crystal fractionation from a hydrous magma. Relatively high Cr2O3 contents are recorded in pyroxenes (up to 1.1 wt.%) and amphiboles (up to 1.4 wt.%) from the three plutons. The chrome spinel crystallized at different stages of melt evolution; as early cumulus inclusions in olivine, inclusions in pyroxenes and amphiboles and late-magmatic intercumulus phase. The intercumulus chrome spinel is homogenous with narrow-range of chemical composition, mainly Fe~(3+)-rich spinel. Spinel inclusions in clinopyroxene and amphibole reveal a wide range of Al (27-44 wt.% Al2O3) and Mg (6-13 wt.% MgO) contents and are commonly zoned. The different chemistries of those spinels reflect various stages of melt evolution and re-equilibration with the host minerals. The early cumulus chrome spinel reveals a complex unmixing structures and compositions. Three types of unmixed spinels are recognized; crystallographically oriented, irregular and complete separation. Unmixing products are Al-rich (Type I) and Fe~(3+)-rich (Type II) spinels with an extensive solid solution between the two end members. The compositions of the unmixed spinels define a miscibility gap with respect to Cr-Al-Fe~(3+), extending from the Fe~(3+)-Al join towards the Cr corner. Spinel unmixing occurs in response to cooling and the increase in oxidation state. The chemistry and grain size of the initial spinel and the cooling rate control the type of unmixing and the chemistry of the final products. Causes of spinel unmixing during late-magmatic stage are analogous to those in metamorphosed complexes. The chemistry of the unmixed spinels is completely different from the initial spinel composition and is not useful in petrogenetic interpretations. Spinels from oxidized magmas are likely to re-equilibrate during cooling and are not good tools for genetic considerations.
机译:尖晶石广泛分布在来自埃及东部沙漠的前寒武纪晚期镁铁质-超镁铁质复合带的超镁铁质岩心中。这些复合体; Gabbro Akarem,Genina Gharbia和Abu Hamamid是阿拉斯加型复合物的前寒武纪类似物,尽管变化不大,但它们并未变质。每次侵入均由在边缘处由辉石岩和辉长岩包裹的橄榄岩岩心组成。硅酸盐矿物学和化学性质表明是由含水岩浆的晶体分级形成的。三种三聚体在辉石(最多1.1重量%)和闪石(最多1.4重量%)中记录到较高的Cr2O3含量。铬尖晶石在熔体发展的不同阶段结晶。作为橄榄石中早期的积云包裹体,辉石和闪石的包裹体以及晚岩浆积云相。 cum间铬尖晶石是均一的,化学成分范围窄,主要是富Fe〜(3+)尖晶石。尖晶石和斜闪石中的尖晶石夹杂物显示出范围广泛的Al(27-44 wt。%Al2O3)和Mg(6-13 wt。%MgO)含量,通常按区域划分。这些尖晶石的化学性质不同,反映了熔体演化的各个阶段以及与主体矿物的重新平衡。早期的积铬尖晶石显示出复杂的分解结构和组成。可以识别三种类型的未混合尖晶石。晶体取向,不规则和完全分离。松解产物是富铝(I型)和富铁(3 +)(II型)尖晶石,在两个末端成员之间具有广泛的固溶体。未混合尖晶石的成分相对于Cr-Al-Fe〜(3+)定义了互溶性间隙,从Fe〜(3 +)-Al接头向Cr角延伸。响应于冷却和氧化态的增加发生尖晶石分解。初始尖晶石的化学性质和晶粒度以及冷却速率控制着未混合的类型和最终产品的化学性质。岩浆后期尖晶石解混的原因类似于变质复合物中的原因。未混合的尖晶石的化学性质与初始尖晶石的成分完全不同,并且在成岩解释中没有用。来自氧化岩浆的尖晶石可能在冷却过程中重新平衡,并且不是遗传考虑的好工具。

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