尼日利亚西南部伊卡雷地区含石榴石-硅线石花岗岩片麻岩的显微结构解释

E. J. Oziegbe, O. Oziegbe
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引用次数: 0

摘要

本文研究了尼日利亚西南部基底杂岩的花岗片麻岩微观结构。伊卡雷地区的花岗片麻岩由矿物组合组成;石榴石、黑云母、钾长石、石英、斜长石、硅线石和不透明矿物。钾长石卟啉母岩具有尖形间隙石英颗粒,钾长石中也含有石英颗粒。大多数钾长石颗粒是高度应变的,在某些情况下是断裂的。柱状硅线石和纤维岩型硅线石均存在。黑云母与纤维岩型硅线石密切相关。硅线石被观察到模仿黑云母产生的叶理作用。钾长石是主要矿物,可能是由黑云母+斜长石+石英+硅线石→石榴石+钾长石+熔体脱水反应形成的。形变长石颗粒、钾长石微裂缝、钾长石单晶孪晶、钾长石、仿晶结构、微长石互生和k长石周围石英的尖形体积等微观结构是区域变质岩熔融变形和固态变形的标志。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microstructural interpretation of the garnet-sillimanite-bearing granite gneiss of Ikare area, southwestern Nigeria
This study presents microstructures from the granite gneiss of the Basement complex of southwestern Nigeria. The granite gneiss of Ikare area comprises of the mineral assemblage; garnet, biotite, K-feldspar, quartz, plagioclase, sillimanite and opaque minerals. K-feldspar porphyroblasts have cuspate interstitial quartz grains, also quartz grains are included in K-feldspar. Most K-feldspar grains are highly strained and in some cases are fractured. Prismatic and fibrolite-type sillimanite are both present. Biotite is closely associated with fibrolitetype sillimanite. Sillimanite was observed to mimic the foliation produced by biotite. K-feldspar is the dominant mineral and could have formed by the dehydration reaction of biotite + plagioclase + quartz + sillimanite → garnet + K-feldspar + melt. Microscopic structures such as strained feldspar grains, micro-fractures in Kfeldspar, simple twinning in K-feldspar, myrmekite, mimicking textures, microperthitic intergrowth and cuspate volumes of quartz surrounding K-feldspar are indicative of melt-bearing and solid-state deformation of regional metamorphic rocks.
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