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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Shock melting of K-feldspar and interlacing with cataclastically deformed plagioclase in granitic rocks at Toqqusap Nunaa, southern West Greenland: Implications for the genesis of the Maniitsoq structure
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Shock melting of K-feldspar and interlacing with cataclastically deformed plagioclase in granitic rocks at Toqqusap Nunaa, southern West Greenland: Implications for the genesis of the Maniitsoq structure

机译:西格陵兰南部Toqqusap Nunaa花岗岩中的钾长石震荡熔融并与碎裂变形斜长石交织:对Maniitsoq结构的成因意义

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摘要

Folded sheets of Mesoarchaean, leucocratic plagioclase-K-feldspar-mesoperthite-bearing granitic rocks in the Toqqusap Nunaa area of the Maniitsoq structure, West Greenland, are characterised by their very fine grain sizes and microstructures without normal igneous or planar/linear tectonic fabrics. Quartz forms equidimensional and branching, ductilely deformed aggregates and bifurcating panels with protrusions, constrictions and chains of ball-shaped grains with healed, radiating intergranular fractures. Plagioclase (An(10-20)) was catadastically deformed and comminuted, whereas K-feldspar and mesoperthite are devoid of cataclastic microstructures. K-feldspar forms dispersed, highly irregular grains with numerous cusps and saddles, indicating almost ubiquitous direct (shock) melting of this mineral. It is commonly located along former fractures in plagioclase, resulting in an 'interlaced' feldspar microstructure with contact shapes indicating subsequent melting of plagioclase directly adjacent to K-feldspar. Mesoperthite forms separate, rounded, and irregular grains with protrusions and cusped margins indicating crystallisation from melts. Some mesoperthite grains are texturally and compositionally heterogeneous and contain internal lenses of K-feldspar and/or plagioclase. Other mesoperthite grains comprise coarsened, 'unzipped' areas, presumably due to localised, fluid-controlled dissolution-reprecipitation processes. The ternary feldspar precursor of the mesoperthite is interpreted as having crystallised from variably effectively mixed K-feldspar shock melts and plagioclase contact melts.
机译:西格陵兰岛Maniitsoq结构的Toqqusap Nunaa地区的含美白垩纪斜长斜长石-钾长石-中白云母的花岗岩折叠褶皱的特点是它们的晶粒尺寸和微观结构非常精细,没有正常的火成岩或平面/线性构造织物。石英形成等维和分支的,延性变形的聚集体和分叉的面板,这些面板具有球形颗粒的突起,收缩和链状,并具有放射状的放射状骨折愈合。斜长石(An(10-20))发生了灾难性的变形和粉碎,而钾长石和中闪石没有碎裂微结构。钾长石形成分散的,高度不规则的晶粒,具有许多尖点和鞍形,表明该矿物几乎无处不在的直接(冲击)熔化。它通常沿斜长石以前的裂缝分布,导致“交错”的长石微结构具有接触形状,表明随后直接与钾长石相邻的斜长石熔化。陨石形成分离的,圆形的,不规则的晶粒,具有突起和尖锐的边缘,表明从熔体中结晶。一些陨石晶粒在质地和成分上是异质的,并且包含钾长石和/或斜长石的内部晶状体。推测是由于局部的,由流体控制的溶解-再沉淀过程,其他的白云母晶粒包含了粗化的“未压缩”区域。变石白云母的三元长石前体被解释为已从各种有效混合的钾长石激波熔体和斜长石接触熔体中结晶出来。

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