首页> 外文期刊>Clays and clay minerals >LOW-TEMPERATURE HYDROTHERMAL ALTERATION OF SILICIC GLASS AT THE PACMANUS HYDROTHERMAL VENT FIELD, MANUS BASIN: AN XRD, SEM AND AEM-TEM STUDY
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LOW-TEMPERATURE HYDROTHERMAL ALTERATION OF SILICIC GLASS AT THE PACMANUS HYDROTHERMAL VENT FIELD, MANUS BASIN: AN XRD, SEM AND AEM-TEM STUDY

机译:曼努斯盆地帕马努斯水热通气孔处硅质玻璃的低温水热交替:XRD,SEM和AEM-TEM研究

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Dacitic lava recovered from the immediate subsurface of the submarine PACMANUS hydrothermal vent field exhibits variable degrees of hydrothermal alteration resulting from the interaction of the glassy volcanic rocks with mineralizing hydrothermal fluids at relatively low temperatures. Transmission electron microscopic (TEM) investigations revealed that the felsic volcanic glass transformed to nm-thick smectitic flakes of the montmorillonite-beidellite series via a dissolution and reprecipitation mechanism. The process of smectite formation did not proceed through X-ray amorphous or poorly crystalline transitional phases. Alteration of the glass was found to be most pronounced adjacent to perlitic cracks and vesicles that form an interconnected network focusing fluid flow. Glass dissolution adjacent to these fluid pathways resulted in a characteristic alteration texture at the ran scale; the intensely altered groundmass contains round cavities that are partially coated or filled by smectitic flakes. The Mg content of the smectite broadly increases towards the fluid pathways. Smectitic flakes with compositions corresponding to saponite occur in the intensely altered groundmass adjacent to perlitic cracks. In addition, anatase, apatite and rare kaolinite were formed during the alteration of the volcanic glass. Primary minerals including plagioclase show only minor textural evidence of alteration. However, some primary plagioclase laths show X-ray amorphous rims depleted in Na, Ca and Al. The TEM investigations of the dacitic lava samples from the PACMANUS vent field demonstrate that volcanic glass has a higher susceptibility to hydrothermal alteration at low temperatures than most associated primary phases. The findings of the study suggest that the interaction between the volcanic rock and the hydrothermal fluids proceeded under open-system conditions leading to a mobilization of alkali elements and a redistribution of Ti at the nm scale. The Mg required for the formation of trioctahedral smectite was supplied by the hydrothermal fluids.
机译:从海底PACMANUS热液喷口场的近地下采出的大熔岩表现出不同程度的热液蚀变,这是由于玻璃状火山岩与矿化热液在较低温度下的相互作用所致。透射电子显微镜(TEM)研究表明,长英质火山玻璃通过溶解和再沉淀机理转变为蒙脱土-贝得石系列纳米厚的近晶薄片。蒙脱石的形成过程没有通过X射线无定形或结晶度差的过渡阶段进行。发现玻璃的变化最明显的是与形成聚集流体流动的互连网络的珍珠岩裂缝和囊泡相邻。与这些流体路径相邻的玻璃溶解导致在运行尺度上具有特征性的变化质构。剧烈变化的地面质量包含圆形空腔,这些空腔部分被近晶薄片覆盖或填充。蒙脱石的Mg含量朝着流体路径广泛增加。具有与皂石对应的组成的分片状薄片出现在与蠕变裂缝相邻的剧烈变化的地基中。另外,在火山玻璃的蚀变过程中还形成了锐钛矿,磷灰石和稀有高岭石。包括斜长石酶在内的主要矿物质仅显示出细微的组织改变迹象。但是,一些原始斜长石板条显示出X射线无定形轮辋中的Na,Ca和Al耗尽。 TEMMAN对PACMANUS喷口场的胶质岩熔岩样品的TEM研究表明,与大多数相关的初生相相比,火山玻璃在低温下对水热蚀变的敏感性更高。研究结果表明,火山岩与热液之间的相互作用是在开放系统条件下进行的,从而导致碱元素的动员和Ti纳米级的Ti的重新分布。形成三八面体蒙脱石所需的镁由水热流体提供。

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