High-temperature, low-H2O Silicic Magmas of the Yellowstone Hotspot: an Experimental Study of Rhyolite from the Bruneau–Jarbidge Eruptive Center, Central Snake River Plain, USA

流纹岩 地质学 硅质 液相线 地球化学 矿物学 辉石 鸽铁矿 玄武岩 火山 火山岩 石英 辉石 斜长石 橄榄石 相(物质) 化学 古生物学 有机化学
作者
Renat Almeev,Torsten Bolte,Barbara P. Nash,François Holtz,Martin Erdmann,Henrietta E. Cathey
出处
期刊:Journal of Petrology [Oxford University Press]
卷期号:53 (9): 1837-1866 被引量:68
标识
DOI:10.1093/petrology/egs035
摘要

The phase relations have been investigated experimentally at 200 and 500 MPa as a function of water activity for one of the least evolved (Indian Batt Rhyolite) and of a more evolved rhyolite composition (Cougar Point Tuff XV) from the 12·8–8·1 Ma Bruneau–Jarbidge eruptive center of the Yellowstone hotspot. Particular priority was given to accurate determination of the water content of the quenched glasses using infrared spectroscopic techniques. Comparison of the composition of natural and experimentally synthesized phases confirms that high temperatures (>900°C) and extremely low melt water contents (<1·5 wt % H2O) are required to reproduce the natural mineral assemblages. In melts containing ∼0·5–1·5 wt % H2O, the liquidus phase is clinopyroxene (excluding Fe–Ti oxides, which are strongly dependent on fO2), and the liquidus temperature of the more evolved Cougar Point Tuff sample (BJR; ∼940–1000°C) is at least 30°C lower than that of the Indian Batt Rhyolite lava sample (IBR2; 970–1030°C). For the composition BJR, the comparison of the compositions of the natural and experimental glasses indicates a pre-eruptive temperature of at least 900°C. The composition of clinopyroxene and pigeonite pairs can be reproduced only for water contents below 1·5 wt % H2O at 900°C, or lower water contents if the temperature is higher. For the composition IBR2, a minimum temperature of 920°C is necessary to reproduce the main phases at 200 and 500 MPa. At 200 MPa, the pre-eruptive water content of the melt is constrained in the range 0·7–1·3 wt % at 950°C and 0·3–1·0 wt % at 1000°C. At 500 MPa, the pre-eruptive temperatures are slightly higher (by ∼30–50°C) for the same ranges of water concentration. The experimental results are used to explore possible proxies to constrain the depth of magma storage. The crystallization sequence of tectosilicates is strongly dependent on pressure between 200 and 500 MPa. In addition, the normative Qtz–Ab–Or contents of glasses quenched from melts coexisting with quartz, sanidine and plagioclase depend on pressure and melt water content, assuming that the normative Qtz and Ab/Or content of such melts is mainly dependent on pressure and water activity, respectively. The combination of results from the phase equilibria and from the composition of glasses indicates that the depth of magma storage for the IBR2 and BJR compositions may be in the range 300–400 MPa (∼≤13 km) and 200–300 MPa (∼≤10 km), respectively.

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