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首页> 外文期刊>Geological Society of America Bulletin >~(40)Ar/~(39)Ar geochronology of Volcan Tepetiltic, western Mexico: Implications for the origin of zoned rhyodacite-rhyolite liquid erupted explosively from an andesite stratovolcano after a prolonged hiatus
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~(40)Ar/~(39)Ar geochronology of Volcan Tepetiltic, western Mexico: Implications for the origin of zoned rhyodacite-rhyolite liquid erupted explosively from an andesite stratovolcano after a prolonged hiatus

机译:墨西哥西部沃尔特特皮蒂尔蒂奇火山的〜(40)Ar /〜(39)Ar地质年代学:长期中断后安第斯山脉平流火山爆发性爆发的分层流纹岩-流纹岩液体的成因意义

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摘要

~(40)Ar/~(39)Ar geochronology is used to determine the eruptive history of Volcan Tepetiltic, a predominantly andesitic stratovolcano that underwent caldera collapse during explosive eruption of zoned rhyodacite-rhyolite. The main edifice was largely constructed between 560 and 450 ka, but it was not complete until ca. 416 ka, during which time ~42 km~3 of phenocryst-rich (25-40 vol%) lavas ranging from 57 to 69 wt% SiO2 were erupted. After a hiatus of ~180 k.y., there was a climactic Plinian eruption of -4-8 km~3 of zoned magma (68-75 wt% SiO2). Afterward, a small rhyodacite dome (69 wt% SiO2; 190 ± 22 ka) and an andesite dome were emplaced on the caldera floor. There has been no subsequent volcanic activity. The crystal-poor (0-5 vol%) Plinian pumice could not be dated directly, owing to the hydration of glass and the absence of a K-rich mineral phase. Instead, the age of the climactic eruption was bracketed to be ca. 236 + 52 ka from ~(40)Ar/~(39)Ar dates (±2σ) on peripherally erupted basaltic andesite flows, which are found underneath (241 + 47 ka) and overlying (220 ± 36 ka) the associated fallout deposits. A volume of ~9 km~3 of basaltic andesite was erupted from three peripheral vents surrounding Volcan Tepetiltic, most of it from a shield volcano that was active before, during, and after the Plinian event. Thermal models indicate that the magma chamber beneath Volcan Tepetiltic would have cooled below its solidus within 36 k.y. in the absence of new injections of magma. Given the long hiatus (~180 k.y.) between the cone-building episode that built the andesite stratovolcano and the explosive eruption of rhyodacite-rhyolite, it is proposed that the influx of voluminous basaltic andesite into the upper crust drove partial melting of the subsolidus magma chamber beneath Volcan Tepetiltic, which explains the synchronicity of the basaltic andesite vol-canism with the Plinian eruption of zoned, crystal-poor rhyolitic melt.
机译:〜(40)Ar /〜(39)Ar地质年代学用于确定Volcan Tepetiltic的喷发历史,Volcan Tepetiltic是一种主要为安第斯山脉的平流层火山,在层状流纹岩-流纹岩的爆发性喷发期间经历了火山口坍塌。主楼主要建于560至450 ka之间,但直到约公元前才完成。 416 ka,在此期间喷出了约42 km〜3的富含phenocryst(25-40%(体积))的熔岩,范围为SiO2介于57至69 wt%。经过约180 k.y.的裂隙后,出现了-4-8 km〜3的分区岩浆(68-75 wt%SiO2)的高空普利尼山喷发。之后,在火山口地板上放置一个小的流纹岩圆顶(69 wt%SiO2; 190±22 ka)和一个安山岩圆顶。此后没有火山活动。由于玻璃的水化作用和缺乏富K的矿物相,因此无法直接测定年代较差(0-5%(体积))Plinian浮石的年代。取而代之的是,高潮爆发的年龄被包围在大约。 〜(40)Ar /〜(39)Ar日期(±2σ)的236 + 52 ka在外围喷出的玄武岩安山岩流中(241 + 47 ka)之下和上空(220±36 ka)相关的沉降矿床中。火山岩长火山周围的三个外围喷口喷出了约9 km〜3的玄武岩安山岩,其中大部分是从普利尼事件发生之前,之中和之后活动的盾形火山喷发而来。热模型表明,Volcan Tepetiltic下面的岩浆室将在36 k.y内冷却到其固相线以下。在没有新的岩浆注入的情况下。考虑到构造安山岩平流层火山的锥体形成过程与流纹岩-流纹岩的爆发性喷发之间存在较长的裂隙(〜180 ky),建议大量玄武质安山岩向上地壳的涌入促使固相岩浆部分熔融。火山岩下方的小室,解释了玄武岩安山岩火山岩与带状,晶体贫乏的流纹岩熔体的普利尼火山爆发的同步性。

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