首页> 外文期刊>Journal of Volcanology and Geothermal Research >Pre-emptive and syn-eruptive conditions in the Black Butte, California dacite: Insight into crystallization kinetics in a silicic magma system
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Pre-emptive and syn-eruptive conditions in the Black Butte, California dacite: Insight into crystallization kinetics in a silicic magma system

机译:加利福尼亚州达克特黑比尤特的先发性和同发性条件:硅质岩浆系统中结晶动力学的洞察力

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A series of experiments and petrographic analyses have been run to determine the pre-emption phase equilibria and ascent dynamics of dacitic lavas composing Black Butte, a dome complex on the flank of Mount Shasta, California. Major and trace element analyses indicate that the Black Butte magma shared a common parent with contemporaneously erupted magmas at the Shasta summit. The Black Butte lava phenocryst phase assemblage (20 v.%) consists of amphibole, plagioclase (core An_(77.5)), and Fe-Ti oxides in a fine-grained (< 0.5 mm) groundmass of plagioclase, pyroxene, Fe-Ti oxides, amphibole, and cristobalite. The phenocryst assemblage and crystal compositions are reproduced experimentally between 890℃ and 910℃, ≥ 300 MPa, X-H2O=1, and oxygen fugacity=NNO + 1. This study has quantified the extent of three crystallization processes occurring in the Black Butte dacite that can be used to discern ascent processes. Magma ascent rate was quantified using the widths of amphibole breakdown rims in natural samples, using an experimental calibration of rim development in a similar magma at relevant conditions. The majority of rims are 34± 10 μm thick, suggesting a time-integrated magma ascent rate of 0.004-0.006 m/s among all four dome lobes. This is comparable to values for effusive samples from the 1980 Mount St. Helens eruption and slightly faster than those estimated at Montserrat. A gap between the compositions of plagioclase phenocryst cores and microlites suggests that while phenocryst growth was continuous throughout ascent, microlite formation did not occur until significantly into ascent. The duration of crystallization is estimated using the magma reservoir depth and ascent rate, as determined from phase equilibria and amphibole rim widths, respectively. Textural analysis of the natural plagioclase crystals yields maximum growth rates of plagioclase phenocryst rims and groundmass microlites of 8.7 x 10~(-8) and 2.5 x 10~(-8) mm/s, respectively. These rates are comparable to values determined from time-sequenced samples of dacite erupted effusively from Mount St. Helens during 1980 and indicate that syneruptive crystallization processes were important during the Black Butte eruptive cycle.
机译:已经进行了一系列实验和岩石学分析,以确定组成黑岩(Black Butte)的酸性熔岩的抢占阶段平衡和上升动力学,黑岩是加利福尼亚州沙斯塔山(Mount Shasta)侧翼的圆顶建筑。主要和微量元素分析表明,在Shasta峰顶上,Black Butte岩浆具有共同的母体,同时具有喷发的岩浆。 Black Butte熔岩相隐相相组合(20 v。%)由角闪石,斜长石(核心An_(77.5))和Fe-Ti氧化物组成,其为细斜长石(<0.5 mm)斜长石,辉石,Fe-Ti氧化物,闪石和方石英。在890℃至910℃,≥300 MPa,X-H2O = 1和氧逸度= NNO + 1的条件下,通过实验再现了表晶的组合和晶体组成。这项研究量化了黑But石辉晶矿中三个结晶过程的程度。可以用来识别上升过程。使用天然样品中闪石分解轮缘的宽度,在相关条件下使用类似岩浆中轮缘发育的实验校准,对岩浆上升速度进行了量化。大多数轮缘的厚度为34±10μm,这表明在所有四个圆顶波瓣中,时间积分的岩浆上升速率为0.004-0.006 m / s。这与1980年圣海伦斯火山喷发的流出样品的值相当,并且比蒙特塞拉特估计的稍快。斜长石隐晶岩核和微晶石的成分之间的间隙表明,虽然在整个上升过程中,隐晶石的生长是连续的,但直到显着上升时才形成微晶石。使用岩浆储层深度和上升速率(分别由相平衡和闪石边缘宽度确定)估算结晶的持续时间。对天然斜长石晶体的结构分析得出斜长石的隐晶棱和地基微晶的最大生长速率分别为8.7 x 10〜(-8)和2.5 x 10〜(-8)mm / s。这些速率可与1980年从圣海伦斯火山喷涌而来的按顺序排列的of石样品确定的值相比较,这表明协同结晶过程在黑Black火山喷发周期中很重要。

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