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首页> 外文期刊>Geology >Pyroxenite-rich mantle formed by recycled oceanic lithosphere: Oxygen-osmium isotope evidence from Canary Island lavas
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Pyroxenite-rich mantle formed by recycled oceanic lithosphere: Oxygen-osmium isotope evidence from Canary Island lavas

机译:循环海洋岩石圈形成的富含辉绿岩的地幔:加那利群岛熔岩的氧os同位素证据

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摘要

Plate tectonic processes result in recycling of crust and lithosphere into Earth's mantle. Evidence for long-term preservation of recycled reservoirs in the mantle comes from the enriched isotopic character of oceanic island basalt (OIB) lavas. Although recycled constituents can explain much of the geochemical variation in the OIB-source mantle, it has been shown that direct melting of these components would lead to magmas with evolved compositions, unlike OIB. Instead, it has been argued that either metasomatic pyroxene-rich peridotite that has inherited the trace element and isotopic character of subducted materials, or high-temperature intramantle metasomatism of lithosphere can explain OIB compositions. To test these models, we present new oxygen and osmium isotope data for lavas from the Canary Islands of El Hierro and La Palma. These islands have distinct O-18/O-16 and Os-187/Os-188 compositions that can be explained through melting of pyroxenite-enriched peridotite mantle containing <10% recycled oceanic lithosphere. We also assess O-Os isotope systematics of lavas from Hawai'i and the Azores and show that they also conform to addition of distinct recycled oceanic components, including lithosphere and pelagic sediment. We conclude that enriched isotopic signatures of some OIBs are consistent with pyroxenite-rich mantle sources metasomatized by recycled components.
机译:板块构造过程导致地壳和岩石圈再循环到地幔中。地幔中可循环利用储层的长期保存的证据来自海洋岛屿玄武岩(OIB)熔岩的丰富同位素特征。尽管回收的成分可以解释OIB源地幔中的许多地球化学变化,但已证明,与OIB不同,这些成分的直接熔融会导致岩浆演化出成分。取而代之的是,已经继承了俯冲物质的痕量元素和同位素特征的富交代辉石的橄榄岩或岩石圈的高温套层交代作用可以解释OIB的组成。为了测试这些模型,我们提供了来自El Hierro和La Palma加那利群岛的熔岩的新的氧和同位素数据。这些岛屿具有独特的O-18 / O-16和Os-187 / Os-188成分,这可以通过富集含有少于10%再循环海洋岩石圈的富辉石岩的橄榄岩地幔熔融来解释。我们还评估了夏威夷和亚速尔群岛熔岩的O-Os同位素系统,并显示它们还符合添加独特的可循环利用海洋成分的条件,包括岩石圈和中上层沉积物。我们得出的结论是,某些OIB的富集同位素特征与富含可再生成分的交联辉石的地幔来源一致。

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