伊朗Neyriz橄榄岩接触中的矽卡岩:弧前环境中的高温熔融和变质作用

Robert Hall , Rainer Thomas
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引用次数: 1

摘要

在伊朗南部的Neyriz地区,在与结晶石灰岩接触的蛇纹石化橄榄岩上方发现了不寻常的矽卡岩。它们被解释为热橄榄岩侵入石灰岩的高温产物,低温绿柱石(与蛇纹石化相关的钙交代作用的产物),或不相关岩石的偶然并置。他们的年龄尚不清楚。矽卡岩为硅灰石-辉石-方解石岩,其中深绿色辉石为高Al、Fe和Ti的辉长岩,具有高Ca Tschermak组分。硅灰石和钙长石中的场关系、结构、矿物组合和成分以及熔体包裹体表明,矽卡岩是在橄榄岩和石灰石接触处熔融形成的,在冷却过程中发生逆行反应,形成石榴石和钙长石。由于压力、XCO2和其他成分变量未知,温度估计存在不确定性,但熔融温度可能接近1100°C,石榴石的形成温度约为900°C。在低温Ca交代作用期间,可能是在Zagros碰撞期间蛇绿岩侵位之后,发生了一些矽卡岩的后期蚀变和靠近石灰岩-橄榄岩接触的绿榴岩的形成。矽卡岩的热侵入起源似乎与地球化学研究推断的蛇绿岩的弧相关超俯冲起源不兼容,但最近在印度尼西亚东部的研究表明,在晚第三纪俯冲回滚期间,热地幔上方形成的熔体侵入弧前高度延伸的大陆地壳。熔融和变质作用的规模、时间和温度与晚白垩世Neyriz蛇绿岩非常相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Skarns at a peridotite contact, Neyriz, Iran: High-temperature melting and metamorphism in a forearc setting

In the Neyriz area of southern Iran unusual skarns are found above serpentinised peridotites at the contact with crystalline limestones. They have been interpreted as the high-temperature product of intrusion by hot peridotite into limestones, as low-temperature rodingites (the product of calcium metasomatism associated with serpentinisation), or a fortuitous juxtaposition of unrelated rocks. Their age is not known. The skarns are wollastonite-pyroxene-calcite rocks in which dark green pyroxenes are fassaites with high Al, Fe and Ti with high Ca-Tschermak's components. The field relations, textures, mineral assemblages and compositions, and melt inclusions in wollastonite and fassaite indicate the skarns formed by melting at the contact between peridotites and limestones with retrograde reactions during cooling forming garnet and anorthite. There are uncertainties in temperature estimates since pressure, XCO2 and other compositional variables are unknown, but melting temperatures were likely to have been close to 1100°C with garnet formation at approximately 900°C. Later alteration of some skarns and formation of rodingites close to the limestone-peridotite contacts occurred during low-temperature Ca metasomatism, probably after emplacement of the ophiolite during Zagros collision. A hot intrusive origin for the skarns appears incompatible with an arc-related supra-subduction origin of the ophiolite inferred from geochemical studies, but recent work in eastern Indonesia shows that during late Neogene subduction rollback, melts formed above hot mantle that intruded highly extended continental crust in a forearc setting. The scale, timing and temperatures of melting and metamorphism are very similar to those of the Late Cretaceous Neyriz ophiolite.

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