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Boninite-like intraplate magmas from Manihiki Plateau require ultra-depleted and enriched source components

机译:来自Manihiki高原的类似博尼石的板内岩浆需要超耗尽和丰富的源成分

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摘要

The Ontong Java and Manihiki oceanic plateaus are believed to have formed through high-degree melting of a mantle plume head. Boninite-like, low-Ti basement rocks at Manihiki, however, imply a more complex magma genesis compared with Ontong Java basement lavas that can be generated by ∼30% melting of a primitive mantle source. Here we show that the trace element and isotope compositions of low-Ti Manihiki rocks can best be explained by re-melting of an ultra-depleted source (possibly a common mantle component in the Ontong Java and Manihiki plume sources) re-enriched by ≤1% of an ocean-island-basalt-like melt component. Unlike boninites formed via hydrous flux melting of refractory mantle at subduction zones, these boninite-like intraplate rocks formed through adiabatic decompression melting of refractory plume material that has been metasomatized by ocean-island-basalt-like melts. Our results suggest that caution is required before assuming all Archaean boninites were formed in association with subduction processes.
机译:据信,Ontong Java和Manihiki海洋高原是通过地幔柱顶头高度融化形成的。然而,马尼希基邦的类似博尼石的低钛基底岩石暗示着与昂通爪哇基底熔岩相比更复杂的岩浆成因,后者可能是由约30%的原始地幔源融化产生的。在这里,我们表明,低钛马尼希基岩石的痕量元素和同位素组成可以通过重新融化≤的超枯竭源(可能是Ontong爪哇和马尼希基羽流源中的常见地幔成分)来重新解释。 1%的海洋-岛屿-玄武岩状熔体成分。不同于在俯冲带通过难熔地幔的水通量熔融形成的邦尼石,这些邦尼石状的板内岩石是通过绝热减压材料对绝热的羽状材料进行绝热减压熔融而形成的,而绝热的羽状材料已经被海洋-岛-玄武岩状熔体交代了。我们的结果表明,在假定所有古生质贝尼石与俯冲过程相关联之前,必须谨慎行事。

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