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Continental mantle signature of Bushveld magmasand coeval diamonds

机译:布什维尔德岩浆和中世纪钻石的大陆幔标志

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The emplacement of the 2.05-billion-year-old Bushveld complex, the world's largest layered intrusion and platinum-group element (PGE) repository, is a singular event in the history of the Kaapvaal craton of southern Africa, one of Earth's earliest surviving continental nuclei. In the prevailing model for the complex's mineralization, the radiogenic strontium and osmium isotope signatures of Bushveld PGE ores are attributed to continental crustal contamination of the host magmas. The scale of the intrusion and lateral homogeneity of the PGE-enriched layers however, have long been problematical for the crustal contamination model, given the typically heterogeneous nature of continental crust. Furthermore, the distribution of Bushveld magmatism matches that of seismically anomalous underlying mantle, implying significant interaction before emplacement in the crust. Mineral samples of the ancient 200-km-deep craton keel, encapsulated in macrodiamonds and entrained by proximal kimberlites, reveal the nature of continental mantle potentially incorporated by Bushveld magmas. Here we show that sulphide inclusions in ~2-billion-year-old diamonds from the 0.5-billion-year-old Venetia and 1.2-billion-year-old Premier kimberlites (on opposite sides of the complex) have initial osmium isotope ratios even more radiogenic than those of Bushveld sulphide ore minerals. Sulphide Re-Os and silicate Sm-Nd and Rb-Sr isotope compositions indicate that continental mantle harzburgite and edogite components, in addition to the original convecting mantle magma, most probably contributed to the genesis of both the diamonds and the Bushveld complex. Coeval diamonds provide key evidence that the main source of Bushveld PGEs is the mantle rather than the crust.
机译:拥有20.5亿年历史的布什维尔德综合体(世界上最大的分层入侵和铂族元素(PGE)储存库)的安置是南部非洲Kaapvaal克拉通历史上唯一的事件,南部非洲是地球上幸存的最早大陆之一核。在复杂矿床的流行模型中,布什维尔德PGE矿石的放射性锶和同位素特征归因于宿主岩浆的大陆地壳污染。然而,考虑到大陆壳的典型异质性,PGE富集层的侵入尺度和横向均一性长期以来一直是地壳污染模型的问题。此外,Bushveld岩浆作用的分布与地震异常的下地幔的分布相匹配,这意味着在将其放入地壳之前存在重要的相互作用。古代200公里深的克拉通龙骨的矿物样品被包裹在大钻石中,并被近端金伯利岩夹带,揭示了可能被布什维尔德岩浆合并的大陆幔的性质。在这里,我们显示来自5亿年历史的威尼斯和12亿年历史的高级金伯利岩(位于复合体的相对侧)的约20亿年历史的钻石中的硫化物夹杂物甚至具有初始is同位素比比布什维尔德硫化矿矿产具有更高的放射性。硫化物Re-Os和硅酸盐的Sm-Nd和Rb-Sr同位素组成表明,除了最初对流的地幔岩浆之外,大陆地幔的Harzburgite和Edogite组分最有可能促进了钻石和Bushveld矿床的成因。中世纪的钻石提供了重要的证据,证明布什维尔德PGE的主要来源是地幔而不是地壳。

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  • 来源
    《Nature》 |2008年第7197期|共页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:55:55

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