...
首页> 外文期刊>Journal of African Earth Sciences >Petrology of a Neoproterozoic mantle peridotite-chromitite association from Abu Dahr area, Eastern Desert, Egypt: Infiltration of a boninitic melt in highly depleted harzburgite
【24h】

Petrology of a Neoproterozoic mantle peridotite-chromitite association from Abu Dahr area, Eastern Desert, Egypt: Infiltration of a boninitic melt in highly depleted harzburgite

机译:埃及东部沙漠阿布达赫尔地区新元古代地幔橄榄岩-铬铁矿的岩石学:高度贫化的尖晶石中贝尼尼特熔体的渗透

获取原文
获取原文并翻译 | 示例

摘要

Peridotites of Abu Dahr represent the main litho-unit of a Neoproterozoic dismembered ophiolite sequence and are among the best-preserved and well-exposed mantle rocks in South Eastern Desert of Egypt. Here, we present new geochemical and mineral chemical data for peridotites and associated pyroxenites and for chromitites and their platinum-group minerals to constrain their petrogenesis and geotectonic setting. The Abu Dahr ophiolite mantle section consists mainly of harzburgites, cut by pyroxenite dykes and containing dunite-chromitite lenses. The harzburgites are composed of olivine, orthopyroxene, spinel and minor clinopyroxene (<1.0 vol %) and amphibole. Olivine from harzburgites is highly magnesian (Fo 91-93) and Cr-spinel shows a wide-range of Cr2O3 and Al2O3 contents. The enstatite component of orthopyroxene decreases from harzburgite (En = 90-91) to orthopyroxenite (En = 84-87). Amphiboles are represented by magnesiohornblende and tschermakite. The chromitites are massive to disseminated and composed of magnesiochromite with high Cr# (83-93) and Mg# (66-79), and low TiO2 ( < 0.1 wt%) content. Solid inclusions in chromite include olivine, orthopyroxene and hornblende. Laurite (RuS2) is the most common PGM detected in the investigated chromitite samples and forms micrometer-size inclusions in fresh chromite. Various Ni-sulfides are found both in fresh chromite and along serpentine veinlets. Harzburgites have a refractory composition with a very low Al2O3 (0.4-0.8 wt%) and CaO (0.2-1.6 wt%) contents and high bulk-rock Mg# (89-92). Geochemical data suggest that the Abu Dahr peridotites are highly depleted SSZ peridotites formed in a forearc mantle wedge setting by high degrees of hydrous partial melting and emplaced as a result of the collision of the intra-oceanic arc with the Beitan gneisses. The podiform chromitites and orthopyroxenites were formed due to impregnation of mantle wedge harzburgites by boninitic melt. The highly depleted nature of the harzburgite is responsible for the small reserves of chromite ore at Abu Dahr and in the South Eastern Desert in general.
机译:阿布达赫尔橄榄岩代表新元古代肢解蛇绿岩序列的主要岩石单元,并且是埃及东南沙漠保存最完好的和暴露良好的地幔岩石之一。在这里,我们提供了橄榄岩和伴生的辉石岩以及铬铁矿及其铂族矿物的新地球化学和矿物化学数据,以限制其成岩作用和大地构造环境。 Abu Dahr蛇绿岩地幔部分主要由辉石岩脉切割的哈兹伯格岩组成,并含有辉长岩-铬铁矿晶状体。 harzburgites由橄榄石,邻苯二甲酚,尖晶石和次要的clinopyroxene(<1.0 vol%)和角闪石组成。 harzburgites的橄榄石是高镁质岩(Fo 91-93),而Cr-spinel显示出广泛的Cr2O3和Al2O3含量。邻辉石的顽辉石成分从尖晶石(En = 90-91)减少到正辉石(En = 84-87)。闪石以菱镁矿和切克玛克特为代表。铬铁矿大量散布,由铬酸镁(Cr-(83-93)和Mg#(66-79)高,二氧化钛(<0.1 wt%)含量低)组成。亚铬酸盐中的固体夹杂物包括橄榄石,邻苯二酚和角闪石。月桂石(RuS2)是在研究的铬铁矿样品中检测到的最常见的PGM,在新鲜铬铁矿中形成微米级的夹杂物。在新鲜的亚铬铁矿中和沿蛇纹石小脉中均发现了各种硫化镍。 Harzburgites的耐火成分具有非常低的Al2O3(0.4-0.8 wt%)和CaO(0.2-1.6 wt%)含量以及高的块状Mg#(89-92)。地球化学数据表明,Abu Dahr橄榄岩是高度贫化的SSZ橄榄岩,形成于前地幔楔形环境中,高度含水部分熔融,并且由于海内弧与北丹片麻岩的碰撞而被安放。由于贝尼尼特熔体浸渍了地幔楔形哈兹伯格岩,形成了梯形铬铁矿和正辉石。 harzburgite的高度枯竭性质是造成阿布达赫和整个东南沙漠中铬铁矿少量储藏的原因。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号