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Hydrothermal alteration and isotopic variations of igneous rocks in Barton Peninsula, King George Island, Antarctica

机译:南极乔治王岛巴顿半岛火成岩的热液蚀变和同位素变化

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O, H, S and Sr isotopes were investigated to characterize the nature of hydrothermal fluids and alteration processes in volcanic and intrusive rocks in Barton Peninsula, King George Island. The oxygen and hydrogen isotope compositions of altered basaltic andesite and granodiorite are similar to each other. The δ18O and δD values gradually decrease from altered basaltic andesite to altered dyke and quartz-veined volcaniclastic rock. The genetic linkage between hydrothermal fluid and granodiorite intrusion accounts for similar δ34S values among sulfide minerals, both in the granodiorite stock and in nearby altered basaltic andesite. Broadly positive correlations of δ18O-SiO2, δ18O-(87Sr/86Sr)i, and 87Sr/86Sr-SiO2 can be established by siliceous fluids enriched in 18O as well as 87Sr. In addition, a positive relationship between (87Sr/86Sr)i values and 1/Sr contents in basaltic andesites can result from mixing between fresh rocks and infiltrating fluids with different endmember 87Sr/86Sr values and Sr contents. The hyperbolic variation of (87Sr/86Sr)i-K/Rb suggests that meteoric water participated in hydrothermal activities via mixing with magmatic water, and the contribution of seawater was insignificant. All of the above results indicate that hydrothermal alteration was influenced by fluids related to granodiorite intrusion, and 18O- and 87Sr-rich meteoric water circulating in the upper crust significantly contributed to hydrothermal activities in Barton Peninsula.
机译:对O,H,S和Sr同位素进行了研究,以表征乔治岛巴顿半岛火山岩和侵入岩中热液的性质和蚀变过程。改变后的玄武质安山岩和花岗闪长岩的氧和氢同位素组成彼此相似。 δ18 O和δD值从玄武质安山岩的变化到堤坝和石英脉火山碎屑岩的变化逐渐减小。高温热流体与花岗闪长岩侵入之间的遗传联系在花岗闪长岩储层和附近蚀变的玄武质安山岩中硫化物矿物之间的δ34S值相似。 δ18 O-SiO2 ,δ18 O-(87 Sr / 86 Sr)i和87 Sr / 86的广义正相关 Sr-SiO2 可以由富含18 以及87 Sr的硅质流体形成。另外,玄武岩安山岩中的(87 Sr / 86 Sr)i 值与1 / Sr含量之间存在正相关关系,这可能是由于新鲜岩石与具有不同端构件的渗透流体之间的混合所致87 Sr / 86 Sr值和Sr内容。 (87 Sr / 86 Sr)i -K / Rb的双曲线变化表明,陨石水通过与岩浆水混合参与热液活动,而海水的贡献微不足道。以上所有结果均表明,与花岗闪长岩侵入有关的流体影响了热液蚀变,上地壳中富含18 O-和87 Sr的陨石水明显促进了Barton半岛的热液活动。 。

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