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Origin of high field strength element enrichment in the Sulu Arc, southern Philippines, revisited

机译:再探菲律宾南部苏禄弧中高场强元素富集的起源

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The enrichment of high field strength elements (HFSE) in Sulu Arc lavas has been proposed as a product of metasomatism of the mantle wedge. It is postulated that a dacitic melt, derived from melting of subducted Sulu Sea basaltic crust, stabilizes in the mantle wedge amphibole, which later breaks down and releases HFSEs into the source of basaltic arc lavas. New data for primitive, high-K calc-alkalic basalts that contain the highest HFSEs among Sulu Arc lavas and seafloor basalts subducting along the Sulu Trench have contrasting chemical and isotopic characteristics. This makes it unlikely that the source of HFSE enrichment in Sulu Arc lavas is melt derived from the subducted Sulu Sea basaltic crust or amphibole formed during metasomatism of the mantle wedge by such melt. We propose that HFSE enrichment in Sulu Arc lavas results from melting of a geochemically enriched component in the mantle wedge. [References: 25]
机译:已提出将苏鲁弧熔岩中的高场强元素(HFSE)富集作为地幔楔交代作用的产物。据推测,由俯冲的苏禄海玄武岩地壳融化而形成的胶状熔体稳定在地幔楔闪石中,随后分解并释放HFSE进入玄武弧熔岩源。在苏禄弧熔岩和沿苏禄海沟俯冲的海底玄武岩中,HFSE含量最高的原始高K钙碱性玄武岩的新数据具有鲜明的化学和同位素特征。这使得Sulu Arc熔岩中HFSE富集的来源不太可能是由俯冲的Sulu Sea玄武岩地壳或闪闪发光形成的。我们认为,苏禄弧熔岩中的HFSE富集来自地幔楔中地球化学富集成分的熔化。 [参考:25]

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