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首页> 外文期刊>Nature Communications >Oxidising agents in sub-arc mantle melts link slab devolatilisation and arc magmas
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Oxidising agents in sub-arc mantle melts link slab devolatilisation and arc magmas

机译:亚弧地幔熔体中的氧化剂链接了板坯的脱挥发分和电弧岩浆

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Subduction zone magmas are more oxidised on eruption than those at mid-ocean ridges. This is attributed either to oxidising components, derived from subducted lithosphere (slab) and added to the mantle wedge, or to oxidation processes occurring during magma ascent via differentiation. Here we provide direct evidence for contributions of oxidising slab agents to melts trapped in the sub-arc mantle. Measurements of sulfur (S) valence state in sub-arc mantle peridotites identify sulfate, both as crystalline anhydrite (CaSO4) and dissolved SO42? in spinel-hosted glass (formerly melt) inclusions. Copper-rich sulfide precipitates in the inclusions and increased Fe3+/∑Fe in spinel record a?S6+–Fe2+ redox coupling during melt percolation through the sub-arc mantle. Sulfate-rich glass inclusions exhibit high U/Th, Pb/Ce, Sr/Nd and δ34S (+?7 to +?11‰), indicating the involvement of dehydration products of serpentinised slab rocks in their parental melt sources. These observations provide a link between liberated slab components and oxidised arc magmas.
机译:俯冲带岩浆在喷发时比在洋中脊处更易被氧化。这归因于源自俯冲岩石圈(平板)的氧化成分,并添加到地幔楔中,或者归因于岩浆上升过程中通过分化而发生的氧化过程。在这里,我们提供了直接的证据,证明了氧化板剂对捕获在弧下地幔中的熔体的贡献。在弧下幔幔橄榄岩中硫(S)价态的测量可以确定硫酸盐,既是结晶硬石膏(CaSO4)又是溶解的SO42?在尖晶石主持的玻璃(以前熔化)夹杂物中。富铜硫化物沉淀在夹杂物中,尖晶石中Fe3 + / ∑Fe的增加记录了在通过亚弧幔的熔体渗流过程中的a?S6 + –Fe2 +氧化还原耦合。富含硫酸盐的玻璃夹杂物表现出较高的U / Th,Pb / Ce,Sr / Nd和δ34S(+?7至+?11‰),表明蛇纹石化平板岩的脱水产物参与了其母体熔体源。这些观察结果提供了释放的板状成分和氧化弧岩浆之间的联系。

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