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Hydrothermal alteration of biotite and plagioclase as inferred from intragranular oxygen isotope- and cation-distribution patterns

机译:从颗粒内氧同位素和阳离子分布模式推断黑云母和斜长石的水热变化

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摘要

The alteration processes of biotite to chlorite and plagioclase to albite that have occurred during hydrothermal alteration of granites were investigated on a scale of ≤ 250 μm using a combination of in situ oxygen isotope- and electron microprobe analyses. On an intragranular scale, oxygen isotope compositions parallel variations in the cationic composition. Steep chemical and isotopic gradients are obtained between secondary and primary phases, whereas both secondary and primary phases themselves appear chemically and isotopically homogeneous. Oxygen isotope- and cation-exchange between fluid and biotite or plagioclase is, therefore, best explained by dissolution-reprecipitation mechanisms, taking place along microfractures, micropores and grain boundaries. The breakdown of biotite to chlorite occurs once K~+ is removed from biotite interlayers. This process is most likely accompanied by a redistribution of elements including oxygen isotopes in both tetrahedral and octahedral sheets of the biotite. Distribution patterns of oxygen isotopes within altered plagioclase indicate that the albitization of plagioclase does not simply reflect addition of SiO_2 and Na~+ to plagioclase. Instead, albite is precipitated from dissolved plagioclase accompanying a restructuring of aluminosilicate tetrahedra within the plagioclase.
机译:利用原位氧同位素分析和电子探针分析,以≤250μm的规模研究了花岗岩水热蚀变过程中发生的黑云母向绿泥石和斜长石变为钠长石的变化过程。在颗粒内尺度上,氧同位素组成平行于阳离子组成的变化。在次要相和主要相之间获得了陡峭的化学梯度和同位素梯度,而次要相和主要相本身都在化学和同位素上均表现出均相。因此,流体与黑云母或斜长石之间的氧同位素和阳离子交换最好通过沿微裂缝,微孔和晶界发生的溶解-再沉淀机制来解释。一旦从黑云母夹层中除去K +,黑云母就会分解为亚氯酸盐。这个过程很可能伴随着黑云母的四面体和八面体薄片中包括氧同位素在内的元素的重新分布。斜长石酶中氧同位素的分布规律表明,斜长石酶的烷化作用并不简单地反映了斜长石酶中SiO_2和Na〜+的添加。取而代之的是,伴随斜长石内的铝硅酸盐四面体的重组,钠长石从溶解的斜长石中沉淀出来。

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