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Evolution of the Acipayam (Denizli, Turkey) Rodingites

机译:Acipayam(土耳其代尼兹利)Rodingites的演变

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Numerous diabase and gabbro dikes intrude the Lycian peridotite thrust sheet of southwestern Turkey. Some of the dikes are rodingitized and the host harzburgite is serpentinized. The present study demonstrates that the major episodes of serpentinization (of harzburgite) and rodingitization (of dikes) predated the obduction of the Lycian peridotite thrust sheet. Hydrogrossular veins, which represent the major event of calcium metasomatism in the dikes, are locally fractured, fragmented, and offset. High-field-strength-element concentrations and Ta/Yb-Th/Yb ratios in the mafic rocks suggest that the dikes were originally emplaced in an island-arc environment; thus, they must have been transported to their current location.Fluid-inclusion microthermometry obtained on primary fluid inclusions in hydrogrossulars indicates that the fluid involved in rodingitization and contemporaneous serpentinization was moderately saline (8 equiv. Wt percent NaCl) and within the range of 250 deg -450 deg C. The above salinity and temperature are consistent with microthermometric measurements obtained from rodingite minerals worldwide.It is apparent from our study that rodingite geochemistry and mineralogy provide valuable information on the tectonic and metamorphic evolution of a region. Trace-element and REE geochemistry can define the tectonic setting of dikes, detailed mineralogy of the dikes and host serpentinite provides information on the relative timing of serpentinization and contemporaneous rodingitization, and fluid-inclusion microthermometry provides information on the temperature and composition of the Ca-rich metamorphic fluids.
机译:辉绿岩和辉长岩堤防侵入土耳其西南部的利西亚橄榄岩橄榄岩冲断层。一些堤防被钉死了,而主哈氏石被蛇纹化了。本研究表明(蛇纹石的)蛇纹石化和(堤防的)蛇纹石化的主要时期早于Lycian橄榄岩冲断层的形成。代表堤坝中钙交代作用的主要事件的水囊静脉被局部断裂,破碎和偏移。镁铁质岩石中的高场强元素浓度和Ta / Yb-Th / Yb比值表明,堤防最初是在岛弧环境中放置的。对水囊中的主要流体包裹体进行的流体包裹体显微热分析表明,参与蛇毒化和同期蛇纹石化的流体为中等盐度(8当量重量百分比的NaCl),且在250范围内-450摄氏度。以上盐度和温度与从全球范围内的钙镁矾矿物获得的微热测量结果一致。从我们的研究中可以明显看出,钙镁榴石的地球化学和矿物学为该地区的构造和变质演化提供了有价值的信息。微量元素和稀土元素地球化学可以定义堤防的构造背景,堤防的详细矿物学和蛇纹岩的主体提供有关蛇纹石化和同期泥炭化的相对时间的信息,流体包裹体微量热测定法可以提供有关钙的温度和组成的信息丰富的变质流体。

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