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Diverse monogenetic volcanism across the main arc of the central Andes, northern Chile

机译:智利北部的中央安第斯山脉的主要弧形多种单一的气体炎

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摘要

Instances of fault-controlled monogenetic volcanism across the subduction arc of the Central Andes at ~ 23°S illuminate the nature of different parental melts being delivered to the crust. Evidence of magmatic history is preserved in bulk rock geochemistry, the content of melt inclusions, and mineral compositions. Volcanism in this region is dominated by felsic and intermediates lavas as the thickened crust (55 – 65 km) and vast volumes (u3e 500,000 km3) of mid-crustal magma beneath the Altiplano-Puna high plateau region prevent mafic magmas from reaching the surface (Davidson u26 De Silva, 1991; Beck et al., 1996; Perkins et al., 2016). However, small volumes of relatively undifferentiated lava have been delivered from the lower crust to the surface along zones of crustal weakness without extensive processing by crustal assimilation and/or extended storage in sub-volcanic magma chambers. Monogenetic eruptions of less-differentiated lava provide important constraints on compositions normally obscured by crustal processing in the Central Andes.Basaltic andesite sampled within the frontal arc (Cerro Overo maar) is a regional mafic end-member and approximates the composition of parental arc magmas derived from partially-molten lower crustal regions where mantle-derived magmas interact with the surrounding lithosphere and undergo density differentiation (MASH zones). Basaltic olivine-hosted melt inclusions from Cerro Overo provide a glimpse of less-evolved melt composition from this region and suggest mobilization of MASH magma by injection of basaltic melt. Basaltic andesite sampled from the eastern (back) margin of the frontal arc (Puntas Negras – El Laco) is another regional mafic endmember, representing a mantle-derived magma composition that is transitional between subduction arc magmatism and intraplate magmatism of the back-arc. The internal crystal architecture revealed by major and trace element zoning of olivine phenocrysts indicates Cerro Overo magma experienced continuous ascent, while Puntas Negras magma experienced a brief period of stalling or storage near the brittle-ductile transition zone (~ 25 km). Aphyric intermediate monogenetic lavas sampled west of (before) the frontal arc display Adakite-like signatures (e.g. high Sr/Y and Sm/Yb) represent small amounts of melt generated with a significant contribution from direct melting of the metabasaltic slab or delaminated lithospheric root at high pressure. These three magmatic regimes sampled at monogenetic centers approximate different end-member compositions being delivered to the lower crust of the Central Andes from which the range of intermediate main arc volcanism in the Altiplano-Puna region is ultimately derived.
机译:在〜23°S〜23°S侧面的断电器弧上的故障控制的单一的火山中的情况照亮了不同父母融化的性质。岩石史上的证据保存在散装地球化学中,熔体夹杂物的含量和矿物组合物。该地区的火山主义是由雀菜和中间体熔岩作为增厚的地壳(55-65 km)和巨大的卷( u3e 500,000平方公里)的中间地壳岩浆,以防止MAFIC岩浆到达表面(戴维森 u26 de Silva,1991; Beck等,1996; Perkins等,2016)。然而,小体积的相对未分化的熔岩已经从下壳体沿着地壳弱势区域传递到表面,而无需通过地壳同化和/或次火山岩浆室中的延长储存的广泛处理。较差的熔岩的单一导出爆发为通常通过中央和中央的地壳加工模糊的组合物提供了重要的约束。在额弧(Cerro Overo Maar)中采样的基龙位和岩石)是区域麦布末端成员,并且近似于普遍的组成来自部分熔融的下部地壳区域,地幔衍生的岩浆岩石与周围的岩石圈相互作用并经历密度分化(捣碎区)。来自Cerro Overo玄武橄榄石托管的熔融包裹提供进化少熔融组合物的从该区域的一瞥和由玄武岩熔化的注射建议MASH岩浆的动员。玄武岩山体从前弧(Puntas Negras-El Laco)的东部(背部)边缘取样是另一个区域MAFIC Endmember,代表了一种地幔衍生的岩浆组合物,该组合物在水肺弧形岩浆和后弧的腔内岩浆中的过渡。 Olivine PhenoCrysts的主要和痕量元素分区显示的内容架构表明C​​erro Overo Magma经历了连续的上升,而Puntas Negras Magma在脆性 - 延展转换区(〜25公里〜25公里)附近的短暂停滞或储存。在(之前)以西(之前)的透镜中间单身血管熔岩(例如高Sr / Y和Sm / Yb)代表少量熔体,产生了弥合符养金属板或分层的岩石根系的直接熔化的显着贡献高压。在单基因中心近似不同的最终构件的组合物取样的这三个岩浆体制被输送到中央安第斯山脉从在高原-普纳区域中间主电弧火山的范围被最终衍生的下部地壳。

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