ECLOGITE-FACIES SEA-FLOOR HYDROTHERMALLY-ALTERED ROCKS: CALCULATED PHASE EQUILIBRIA FOR AN EXAMPLE FROM THEWESTERN ALPS AT SERVETTE

IF 1.2 4区 地球科学 Q2 GEOLOGY
G. Rebay, R. Powell
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引用次数: 9

Abstract

In the St. Marcel Valley at Servette in the Western Alps metabasic rocks crop out that were variably altered in a sea-floor hydrothermal system. Successively, they were metamorphosed to eclogite facies. This was used as an opportunity to explore the range of eclogite-facies mineral assemblages that can develop in such altered rocks. The continuum is represented qualitatively by a series of rock-types: eclogite, glaucophanite, talc schist and chlorite schist, with increasing alteration, supposed to all have involved eclogite-facies mineral assemblages. Later, they were variably retrogressed under greenschist-facies conditions. The eclogite-facies mineral assemblages developed from the broad alteration trend represented by the four rock-types have been forward-modelled in terms of three composition vectors. P-T pseudo-sections for the compositions used to represent the rock-types suggest that a P-T of about 22 kbar and 600°C is consistent for the conditions of formation of the rock-types. T-X pseudo-sections along the composition vectors are used to represent the alteration continuum showing the way the mineral assemblages are affected by the degree of alteration.
榴辉岩相海底热液蚀变岩:以servette西阿尔卑斯山为例的相平衡计算
在西阿尔卑斯山塞尔维特的圣马塞尔山谷,变质岩在海底热液系统中发生了不同程度的变化。先后变质为榴辉岩相。这是一个探索在这种蚀变岩中可能发育的榴辉岩相矿物组合范围的机会。该连续体在质上表现为榴辉岩、蓝绢岩、滑石片岩和绿泥石片岩等一系列岩石类型,蚀变逐渐增加,应该都涉及榴辉岩相矿物组合。之后,在绿片岩相条件下发生了变退。以四种岩石类型为代表的广泛蚀变趋势发育的榴辉岩相矿物组合,在三个组成向量上进行了正演模拟。用于代表岩石类型的成分的P-T伪剖面表明,约22 kbar和600°C的P-T与岩石类型的形成条件一致。沿着组成向量的T-X伪剖面表示蚀变连续体,显示矿物组合受蚀变程度的影响。
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来源期刊
Ofioliti
Ofioliti 地学-地质学
CiteScore
2.40
自引率
7.70%
发文量
1
期刊介绍: Since 1976, Ofioliti provides an international forum for original contributions and reviews in the field of the geodynamics, petrology, geochemistry, biostratigraphy, stratigraphy, tectonics and paleogeography applied to ophiolitic terrains and modern oceanic lithosphere, including their sedimentary cover. Studies of topics such as geodynamics of the mantle, the evolution of orogens including ophiolites and paleoceanography are also welcome
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