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首页> 外文期刊>Contributions to Mineralogy and Petrology >Laser-ablation ICP-MS analysis of silicate and sulfide melt inclusions in an andesitic complex II: evidence for magma mixing and magma chamber evolution
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Laser-ablation ICP-MS analysis of silicate and sulfide melt inclusions in an andesitic complex II: evidence for magma mixing and magma chamber evolution

机译:激光烧蚀ICP-MS分析安山岩复杂物中的硅酸盐和硫化物熔体II:岩浆混合和岩浆腔演化的证据

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Laser-ablation microanalysis of a large suite of silicate and sulfide melt inclusions from the deeply eroded, Cu-Au-mineralizing Farallon Negro Volcanic Complex (NW Argentina) shows that most phenocrysts in a given rock sample were not formed in equilibrium with each other. Phenocrysts in the andesitic volcano were brought together in dominantly andesitic--dacitic extrusive and intrusive rocks by intense magma mixing. This hybridization process is not apparent from macroscopic mingling textures, but is clearly recorded by systematically contrasting melt inclusions in different minerals from a given sample. Amphibole (and rare pyroxene) phenocrysts consistently contain inclusions of a mafic melt from which they crystallized before and during magma mixing. Most plagioclase and quartz phenocrysts contain melt inclusions of more felsic composition than the host rock. The endmember components of this mixing process are a rhyodacite magma with a likely crustal component, and a very mafic mantle-derived magma similar in composition to lamp-rophyre dykes emplaced early in the evolution of the complex. The resulting magmas are dominantly andesitic, in sharp contrast to the prominently bimodal distribution of mafic and felsic melts recorded by the inclusions. These results severely limit the use of mineral assemblages to derive information on the conditions of magma formation. Observed mineral associations are primarily the result of the mixing of partially crystallized magmas. The most mafic melt is trapped only in amphibole, suggesting pressures exceeding 350 MPa, temperatures of around 1,000 deg C and water contents in excess on 6 wt percent. Upon mixing, amphibole crystallized with plagioclase from andesitic magma in the source region of porphyry intrusions at 250 MPa, 950 deg C and water contents of 5.5 wt percent. During ascent of the extrusive magmas, pyroxene and plagioclase crystallized together, as a result of magma degassing at low pressures (150 MPa). Protracted extrusive activity built a large stratovolcano over the total lifetime of the magmatic complex ( > 3 m.y.). The mixing process probably triggered eruptions as a result of volatile exsolution.
机译:对深腐蚀的铜金矿化的法拉隆内格罗火山复合体(阿根廷西北部)中大量硅酸盐和硫化物熔体包裹体的激光烧蚀显微分析表明,给定岩石样品中的大多数隐晶不会相互平衡形成。在强烈的岩浆混合作用下,安第斯火山中的变色岩聚集在占优势的安第斯-达吉特挤压岩和侵入岩中。从宏观混合纹理来看,这种杂交过程并不明显,但是通过系统地对比给定样品中不同矿物中的熔体夹杂物,可以清楚地记录下来。闪石(和稀有的辉石)酚醛晶体始终含有镁铁质熔体的包裹体,它们在岩浆混合之前和期间从中结晶出来。大多数斜长石和石英隐晶岩包含的熔融夹杂物比基质岩石的长英质成分更多。这种混合过程的末段成分是流纹岩岩浆,可能具有地壳成分,以及非常镁铁质的地幔衍生岩浆,其成分类似于在复杂的演化过程中所形成的灯-斑岩脉。与夹杂物记录的镁铁质和长质熔体的显着双峰分布形成鲜明对比的是,形成的岩浆主要为安山岩。这些结果严重限制了使用矿物组合来获得有关岩浆形成条件的信息。观察到的矿物缔合主要是部分结晶岩浆混合的结果。镁铁质熔体最多,仅存于闪石中,表明压力超过350 MPa,温度约为1,000摄氏度,水含量超过6 wt%。混合后,闪锌矿从斜纹岩岩浆中的斜长石中结晶出来,斑岩侵入岩源区为250 MPa,950℃,含水量为5.5 wt%。在挤压岩浆上升期间,由于岩浆在低压下(150 MPa)脱气,辉石和斜长石一起结晶。持续的挤压活动在岩浆复合体的总寿命(> 3 m.y.)中形成了一个大型的平流层火山。混合过程可能是由于挥发物挥发而引起的爆发。

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