首页> 外文期刊>Mineralogical Magazine >Modelling of dissolution-reprecipitation ion-exchange reactions for the development of flame perthite in a suite of sheared alkaline rocks: an example from Chimakurthy, Eastern Ghats, India
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Modelling of dissolution-reprecipitation ion-exchange reactions for the development of flame perthite in a suite of sheared alkaline rocks: an example from Chimakurthy, Eastern Ghats, India

机译:溶解-再沉淀离子交换反应在一组剪切的碱性岩石中发展火焰珍珠岩的模型:以印度东高止山脉的Chimakurthy为例

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摘要

A suite of sheared syenites occurring along the western margin of the Eastern Ghats Belt, India have developed extensive flame perthite in K-feldspar. Albite flames show large variation in size, shape and abundance. Field, petrographic and chemical evidence suggests complex interplay between differential stress, recycling of K-Na-Ca and supply of Na by infiltration for the development of flame perthite. Partial replacement of pyroxenes, plagioclase and alkali feldspar by amphibole, biotite, nepheline and calcite causes internal recycling of Na-Ca-K in a closed system. Representative compositions of the minerals are used to constrain the model dissolution-reprecipitation ion-exchange reactions involving Na and K either as reactants and/or as products. A substantial proportion of Na+ required for the development of the albite flames, originates from Na metasomatism accompanied by ductile shearing in the feldspathic rocks, providing an ideal open system wherein both the differential stress and Na+ are made available for the development of the flame perthites. This process probably augmented the replacement of K-feldspar grains by flame albite and the K+ released was carried away by the fluid or, possibly, augmented the biotite-forming reactions in the associated quartz-poor syenites and, hence, trigger the Na-K cycle in these rocks.
机译:印度东部高止山脉带西缘出现的一组剪切正长岩在钾长石中形成了广泛的火焰蠕虫。阿尔比特火焰显示出大小,形状和丰度的巨大变化。现场,岩相学和化学证据表明,在应力差,K-Na-Ca的循环利用和通过渗透形成火焰珍珠岩形成的Na供给之间存在复杂的相互作用。用角闪石,黑云母,霞石和方解石部分替代辉石,斜长石和碱金属长石会导致Na-Ca-K在封闭系统中内部循环。矿物的代表性组成用于限制涉及Na和K作为反应物和/或产物的模型溶解-再沉淀离子交换反应。钠长石火焰发展所需的大部分Na +源自Na交代作用并伴随长石岩石中的韧性剪切,提供了理想的开放系统,其中差压和Na +均可用于发展火焰珍珠岩。该过程可能会增加火焰钠长石对钾长石的替代作用,释放出的钾离子会被流体带走,或者可能会增加相关的石英含量低的正长岩中黑云母的形成反应,从而触发钠钾。在这些岩石中循环。

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