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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Olivine xenocryst diffusion reveals rapid monogenetic basaltic magma ascent following complex storage at Pupuke Maar, Auckland Volcanic Field, New Zealand
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Olivine xenocryst diffusion reveals rapid monogenetic basaltic magma ascent following complex storage at Pupuke Maar, Auckland Volcanic Field, New Zealand

机译:Olivine XenoCryst扩散揭示了在新西兰奥克兰火山岩野马的复杂储存之后快速单一的玄武岩岩浆Ascence

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Monogenetic basalts are spatially and temporally unpredictable and are commonly interpreted to rise extremely rapidly and directly from their mantle source, increasing their potential hazard. The assumption of rapid ascent is commonly based upon the presence of xenocrysts and xenoliths as well as generally short OH and elemental diffusion profiles at the margins of xenocrystic material. We show that small-volume monogenetic basalts may also have complex multi-stage deep mantle magma storage prior to rapid ascent, using coupled diffusion modelling of major and trace elements and OH within olivine xenocrysts. The xenocrysts and crystal clusters were extracted from a tuff ring in Auckland City (New Zealand), within the Late Pleistocene-Holocene 100 km(2) Auckland Volcanic Field. Forsterite-rich olivine xenocrysts (Fo#(89.5-91.7)) have undergone Fe-Mg (Fo#), Ca, Ni and Mn element diffusion that extends up to similar to 200 mu m from their rims. Major and minor element diffusion at frozen melt-xenocryst interfaces was modelled using crystallographically oriented grains. These profiles show that the host basalt collected most of the olivine xenocrysts and xenoliths over approximately 1 month. The narrow OH diffusion profiles in the olivine suggests late-stage degassing over 1 day (i.e., not extremely rapid ascent rates). Some olivine crystals have diffusion profiles requiring step function initial conditions; these indicate that magma resided in the mantle for up to one year and accumulated from multiple batches of mixed magmas. Our results show that primitive magmas in small volume monogenetic volcanoes may have complex lithospheric magmatic histories, but they may suddenly rise to eruption, with seismic detection providing less than a week of warning. (C) 2018 Elsevier B.V. All rights reserved.
机译:单成玄武岩是空间和时间难以预测,通常解释为从地幔源极其迅速并直接上升,增加了他们的潜在危险。快速上升的假设是人所捕虏晶和包体,以及一般短OH和元素扩散分布在材料xenocrystic的边缘存在为主。我们表明,小容积单基因玄武岩还可以向快速上升具有复杂的多阶段深地幔岩浆存储之前,利用主要和微量元素的耦合扩散建模和OH橄榄石捕虏晶内。该捕虏晶和晶体簇从奥克兰市(新西兰)凝灰岩环萃取,将晚更新世全新世100公里(2)奥克兰火山领域内。富镁橄榄石橄榄石捕虏晶(佛#(89.5-91.7))经历了一直延伸到从它们的边缘类似于200微米铁 - 镁(佛#),钙,Ni和Mn元素的扩散。主要和在冷冻熔融捕虏晶接口次要元素扩散用晶体学取向的晶粒建模。这些配置文件表明主机玄武岩收集最橄榄石捕虏晶和包体在大约1个月。在橄榄石窄OH扩散分布表明晚期脱气超过。1天(即,不是非常快速上升率)。一些橄榄石晶体具有需要的阶跃函数的初始条件扩散分布;这些都表明了岩浆的地幔的长达一年的居住和混合岩浆的多个批次积累。我们的研究结果表明,在小体积单成因火山岩浆的原始可能有复杂的岩石圈岩浆的历史,但是他们可能会突然上升到喷发,具有抗震检测提供小于预警的一个星期。 (c)2018年elestvier b.v.保留所有权利。

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