Sopron变质杂岩中电气石的稳定氢同位素组成:变质闭合温度和流体组成

Attila Demény
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引用次数: 0

摘要

变质岩和矿物稳定的氢同位素组成可以提供变质流体起源的信息,这在经历多次变质事件的体系中尤为重要。Sopron正长岩-云母岩杂岩是一个很好的研究对象,因为它记录了Variscan变质事件和Alpine变质事件以及Variscan花岗岩浆活动的迹象。本文采集了Sopron变质杂岩中含电气石的岩石(花岗质正长岩和蓝绿绿白云母片岩),分析了其电气石颗粒的稳定氢同位素组成(δ 2 H), δ 2 H值(相对于V-SMOW为- 23±1‰)与俯冲、含海水岩石的脱挥发流体通量一致。电气石-绿泥石氢同位素分馏对应于550℃左右,表明冷却过程中δ 2 H值在接近变质峰温度时形成,没有发生逆同位素交换。
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Stable hydrogen isotope compositions of tourmalines from the Sopron metamorphic complex: Metamorphic closure temperature and fluid composition
Abstract Stable hydrogen isotope compositions of metamorphic rocks and minerals can provide information on the origin of metamorphic fluids, which is especially important in systems that had experienced multiple metamorphic events. The Sopron orthogneiss-micaschist complex is a good target as it records signs of Variscan and Alpine metamorphic events as well as Variscan granitic magmatism. In this study tourmaline-bearing rocks (pegmatitic orthogneisses and kyanite-chlorite-muscovite schists) of the Sopron metamorphic complex were sampled and their tourmaline grains were analyzed for stable hydrogen isotope compositions (δ 2 H). The δ 2 H values (−23 ± 1‰, relative to V-SMOW) are in accordance with a fluid flux from devolatilization of subducted, seawater-containing rocks. Tourmaline-chlorite hydrogen isotope fractionations correspond to about 550 °C, indicating that δ 2 H values formed close to peak metamorphic temperatures are preserved without retrograde isotope exchange during cooling.
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来源期刊
Central European Geology
Central European Geology Earth and Planetary Sciences-Geology
CiteScore
1.40
自引率
0.00%
发文量
8
期刊最新文献
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