首页> 外文期刊>Contributions to Mineralogy and Petrology >Petrology of Aoso volcano, northeast Japan arc: temporal variation of the magma feeding system and nature of low-K amphibole andesite in the Aoso-Osore volcanic zone
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Petrology of Aoso volcano, northeast Japan arc: temporal variation of the magma feeding system and nature of low-K amphibole andesite in the Aoso-Osore volcanic zone

机译:日本东北部青尾火山岩石学:青尾-奥索尔火山岩浆岩浆供给系统的时间变化和低钾闪石安山岩的性质

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摘要

The Aoso volcano is a member of the newly defined volcanic front of Northeast Japan, characterized by the occurrence of low-K and hornblende andesites. Its activity can be divided into three stages: the early, caldera-forming, and late stages. While pet-rographic and geochemical data show all products underwent magma mixing or co-mingling, Sr and Nd isotopic ratios indicate that all are consanguineous. The end-member magmas are basaltic and andesitic in the early stage, but basaltic and dacitic in the late stage. In the caldera-forming stage, hornblende-free and hornblende-rich andesites co-mingled, which triggered an explosive eruption leading to caldera formation. Hornblende occurs also in the dacite from the early part of the late stage. These hornblende andesites and dacites are lower in magmatic temperature compared to hornblende-free andesites. The estimated basaltic end-member is low-K and high in magmatic temperature, and can be derived by a high degree of partial melting of mantle under the volcanic front. The estimated andesitic and dacitic end-members cannot be derived from the basaltic end-member magma through fractional crystallization, but can be derived from partial re-melting of the solidified low-K basalt, leaving amphibolitic and gabbroic residues, respectively.
机译:Aoso火山是日本东北新定义的火山锋的成员,其特征是低钾和角闪石安山岩的出现。它的活动可以分为三个阶段:早期,破火山口形成和晚期。岩石学和地球化学数据显示,所有产品均经历了岩浆混合或混合,而Sr和Nd同位素比值表明它们都是近亲的。末段岩浆在早期为玄武岩和安山岩,而在后期为玄武岩和Dacitic。在火山口形成阶段,无角闪石和富含角闪石的安山岩混合在一起,这引发了爆发性喷发,导致火山口形成。从后期的早期开始,角闪石也出现在dacite中。与不含角闪石的安山岩相比,这些角闪石的安山岩和菊苣的岩浆温度较低。估计的玄武质末段低钾,岩浆温度高,可以通过火山锋下地幔的高度局部熔融来推导。估计的安山岩和大山岩端岩不能通过分步结晶从玄武岩端岩浆中获得,而可以从凝固的低钾玄武岩的部分重熔中获得,分别留下闪石残骸和辉长岩残渣。

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