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首页> 外文期刊>Bulletin of Volcanology >Magma evolution of Quaternary minor volcanic centres in southern Peru, Central Andes
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Magma evolution of Quaternary minor volcanic centres in southern Peru, Central Andes

机译:秘鲁南部安第斯中部第四纪小火山中心的岩浆演化

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摘要

Minor centres in the Central Volcanic Zone (CVZ) of the Andes occur in different places and are essential indicators of magmatic processes leading to formation of composite volcano. The Andahua–Orcopampa and Huambo monogenetic fields are located in a unique tectonic setting, in and along the margins of a deep valley. This valley, oblique to the NW–SE-trend of the CVZ, is located between two composite volcanoes (Nevado Coropuna to the east and Nevado Sabancaya to the west). Structural analysis of these volcanic fields, based on SPOT satellite images, indicates four main groups of faults. These faults may have controlled magma ascent and the distribution of most centres in this deep valley shaped by en-echelon faulting. Morphometric criteria and 14C age dating attest to four main periods of activity: Late Pleistocene, Early to Middle Holocene, Late Holocene and Historic. The two most interesting features of the cones are the wide compositional range of their lavas (52.1 to 68.1 wt.% SiO2) and the unusual occurrence of mafic lavas (olivine-rich basaltic andesites and basaltic andesites). Occurrence of such minor volcanic centres and mafic magmas in the CVZ may provide clues about the magma source in southern Peru. Such information is otherwise difficult to obtain because lavas produced by composite volcanoes are affected by shallow processes that strongly mask source signatures. Major, trace, and rare earth elements, as well as Sr-, Nd-, Pb- and O-isotope data obtained on high-K calc-alkaline lavas of the Andahua–Orcopampa and Huambo volcanic province characterise their source and their evolution. These lavas display a range comparable to those of the CVZ composite volcanoes for radiogenic and stable isotopes (87Sr/86Sr: 0.70591–0.70694, 143Nd/144Nd: 0.512317–0.512509, 206Pb/204Pb: 18.30–18.63, 207Pb/204Pb: 15.57–15.60, 208Pb/204Pb: 38.49–38.64, and δ 18O: 7.1–10.0‰ SMOW), attesting to involvement of a crustal component. Sediment is absent from the Peru–Chile trench, and hence cannot be the source of such enrichment. Partial melts of the lowermost part of the thick Andean continental crust with a granulitic garnet-bearing residue added to mantle-derived arc magmas in a high-pressure MASH [melting, assimilation, storage and homogenisation] zone may play a major role in magma genesis. This may also explain the chemical characteristics of the Andahua–Orcopampa and Huambo magmas. Fractional crystallisation processes are the main governors of magma evolution for the Andahua–Orcopampa and Huambo volcanic province. An open-system evolution is, however, required to explain some O-isotopes and some major and trace elements values. Modelling of AFC processes suggests the Charcani gneisses and the local Andahua–Orcopampa and Huambo basement may be plausible contaminants.
机译:安第斯山脉中部火山带(CVZ)的次要中心分布在不同的地方,是导致复合火山形成的岩浆作用的重要标志。 Andahua–Orcopampa和Huambo单种场位于独特的构造环境中,位于深谷的边缘和沿其边缘。该山谷与CVZ的NW-SE趋势倾斜,位于两个复合火山之间(东部为内华达州科罗普纳,西部为内华达州萨班卡亚)。根据SPOT卫星图像对这些火山场进行结构分析,可得出四类主要断层。这些断层可能已经控制了岩浆上升,并且在由梯级断层形成的深谷中大多数中心的分布。形态计量标准和14 C年龄可证明活动的四个主要时期:更新世晚期,全新世早期至中期,全新世晚期和历史活动。视锥细胞的两个最有趣的特征是其熔岩的成分范围宽(52.1至68.1 wt。%SiO2 )和镁铁质熔岩的异常发生(富含橄榄石的玄武质安山岩和玄武质安山岩)。 CVZ中这类较小的火山中心和镁铁质岩浆的发生可能为秘鲁南部的岩浆源提供了线索。否则很难获得这样的信息,因为复合火山产生的熔岩会受到强烈掩盖源签名的浅层过程的影响。在安达瓦-奥科安帕帕火山和万博火山省的高钾钙碱性熔岩上获得的主要,痕量和稀土元素以及Sr,Nd,Pb和O同位素数据表征了它们的来源及其演化。这些熔岩的放射性范围和稳定同位素与CVZ复合火山的范围相当(87 Sr / 86 Sr:0.70591–0.70694,143 Nd / 144 Nd :0.512317–0.512509,206 Pb / 204 Pb:18.30–18.63,207 Pb / 204 Pb:15.57–15.60,208 Pb / 204 < /sup>Pb:38.49–38.64,δ 18 O:7.1–10.0‰SMOW),证明了地壳成分的参与。秘鲁-智利海沟缺乏沉积物,因此不能成为这种富集的来源。在高压MASH [熔融,同化,储藏和均质化]带中,厚的安第斯大陆壳最下部的部分熔融物,加上含花岗岩颗粒的石榴石残渣添加到地幔衍生的弧形岩浆中。 。这也可以解释安达华-奥科安帕帕和万博岩浆的化学特征。分数结晶过程是安达瓦-奥科安帕帕和万博火山省岩浆演化的主要控制者。但是,需要一个开放系统的演化来解释一些O同位素以及一些主要和痕量元素的值。对AFC过程的建模表明,Charcani片麻岩以及当地的Andahua-Orcopampa和Huambo地下室可能是可能的污染物。

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