首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Transfer of Os isotopic signatures from peridotite to chromitite in the subcontinental mantle: Insights from in situ analysis of platinum-group and base-metal minerals (Ojen peridotite massif, southern Spain)
【24h】

Transfer of Os isotopic signatures from peridotite to chromitite in the subcontinental mantle: Insights from in situ analysis of platinum-group and base-metal minerals (Ojen peridotite massif, southern Spain)

机译:Os同位素特征从亚大陆地幔中的橄榄岩到铬铁矿的转移:铂族和贱金属矿物原位分析的见解(西班牙南部的奥恩橄榄岩地块)

获取原文
获取原文并翻译 | 示例
           

摘要

Small (<5 m) chromitite bodies in the Ojen peridotite massif (southern Spain) were formed when small fractions of volatile-rich melts, residual after kilometric-scale infiltration through the subcontinental mantle, reacted with Cr-rich pyroxenite enclosed in dunite. The Os isotopic compositions of accessory platinum-group minerals (PGM) and base-metal minerals (BMM, including sulfides and arsenides) in chromitite and the host peridotite have similar values and ranges of heterogeneity. The formation of chromitite, which involved partial melting, melt transport/pooling and melt-rock reactions, did not erase the original ~(187)Os/~(188)Os heterogeneity of the peridotite source. The distribution of Os model ages calculated for chromitite-hosted PGM-BMM mainly clusters at - 0.3 Ga; minor peaks extend back to -1.4 Ga. Base-metal sulfides (BMS) hosted in peridotite show a relatively minor age peak at~0.2 Ga and two prominent peaks at ~ 0.6 and 1.2 Ga. Independent geochronological data constrain the formation of chromitites at 21 Ma ago, suggesting that these older model ages reflect the sourcing of Os from volumes of older subcontinental lithospheric mantle that underwent several episodes of melting and metasomatism since the Mesoproterozoic We interpret the different distributions of ~(187)Os/~(188)Os and model ages in chromitite and peridotite as due to the combined control that mantle source heterogeneity, melting and melt/ rock interaction processes exert on the Os-isotope composition of the parental melts of chromitite.
机译:Ojen橄榄岩块体(西班牙南部)中形成小的(<5 m)铬铁矿体,是由一小部分富含挥发物的熔融物形成的,这些熔融物在千米尺度下通过次大陆地幔渗透后残留,并与包裹在榴du石中的富含Cr的辉石发生反应。铬铁矿和主体橄榄岩中的辅助铂族矿物(PGM)和贱金属矿物(BMM,包括硫化物和砷化物)的Os同位素组成具有相似的值和异质性范围。铬铁矿的形成涉及部分熔融,熔体输送/合并和熔岩反应,并不能消除橄榄岩源最初的〜(187)Os /〜(188)Os异质性。计算得到的铬铁矿型PGM-BMM的Os模型年龄分布主要集中在-0.3 Ga。较小的峰延伸到-1.4 Ga。橄榄岩中的贱金属硫化物(BMS)在〜0.2 Ga处有相对较小的年龄峰,在〜0.6和1.2 Ga处有两个突出的峰。独立的地质年代学数据限制了铬铁矿在21点的形成。 Ma之前,暗示这些较老的模型年龄反映了自中元古代以来经历了几次融化和交代作用的旧大陆次岩石圈地幔中的Os来源,我们解释了〜(187)Os /〜(188)Os和由于地幔源异质性,融化和熔体/岩石相互作用过程共同作用于铬铁矿母体熔体的Os同位素组成上,综合控制了铬铁矿和橄榄岩的模型年龄。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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