Metamorphic evolution of sillimanite gneiss in the high-pressure terrane of the Western Gneiss Region (Norway)

A. Engvik, Johannes Jakob
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Abstract

Abstract. Sillimanite-bearing gneisses in the Romsdal region of the Western Gneiss Region (south Norway) have been investigated to document the presence, formation, composition and petrological evolution of the sillimanite-bearing assemblages. Sillimanite is found in augen gneiss, as nodular gneiss, and in well-foliated sillimanite–mica gneiss. Lenses and layers of eclogite occur within the gneiss units. The sillimanite-bearing gneisses are heterogranular and dominated by quartz, plagioclase (An29–41), K-feldspar and biotite (Mg# = 0.48–0.58; Ti = 0.16–0.36 a.p.f.u.), with variable amounts of white mica (Si = 6.1–6.3). K-feldspar occurs as porphyroclasts in augen gneiss, and garnet constitutes resorbed porphyroblasts. Garnet (Alm46–56Sps24–36Prp10−20Grs4–6; Mg# = 0.22–0.29) shows rimward-decreasing Mg#, together with a smaller grossular decrease and a marked spessartine increase up to Sps36. The foliation is defined by crystal-preferred-orientation micas, elongation of shape-preferred-orientation coarse K-feldspar phenocrysts and a modal banding of phases. Sillimanite occurs as coarse orientation-parallel matrix porphyroblasts, as finer grains and as fibrolitic aggregates. Quartz constitutes coarser elongated grains and monomineralic rods. Pseudosection modelling suggests that the peak-metamorphic mineral assemblage of garnet–sillimanite–feldspar–biotite–quartz–ilmenite–liquid equilibrated at temperatures up to 750 °C and pressures of 0.6 GPa. Subsequent retrogression consumed garnet. Mineral replacement and melt crystallization involved sillimanite, white mica, K-feldspar and quartz. The results document a metamorphic retrogression of the sillimanite gneisses in accordance with the presence of remnants of eclogites and high-pressure granulites in this northwestern part of the Western Gneiss Region.
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挪威西部片麻岩地区高压陆相矽卡岩片麻岩的变质演化
摘要。对西部片麻岩地区(挪威南部)罗姆斯达尔地区的含矽线石片麻岩进行了调查,以记录含矽线石集合体的存在、形成、成分和岩石学演变。黝帘石存在于奥长片麻岩、结核片麻岩和叶理良好的黝帘石云母片麻岩中。片麻岩单元内有透镜状和层状的闪长岩。含矽线石的片麻岩呈杂晶状,主要成分为石英、斜长石(An29-41)、钾长石和斜长石(Mg# = 0.48-0.58; Ti = 0.16-0.36 a.p.f.u.),以及数量不等的白云母(Si = 6.1-6.3)。钾长石以斑岩的形式出现在奥长片麻岩中,石榴石则构成吸收斑岩。石榴石(Alm46-56Sps24-36Prp10-20Grs4-6;Mg# = 0.22-0.29)的 Mg#呈边缘性递减,毛玻璃的递减幅度较小,而锰铝榴石的递增幅度明显,最高可达 Sps36。褶皱是由晶体优选取向的云母、形状优选取向的粗钾长石表晶的拉长和相的模带确定的。黝帘石以取向平行的粗基质斑晶、细晶粒和纤维状聚集体的形式出现。石英呈较粗的细长颗粒和单矿物棒状。假吸积模型表明,石榴石-菱锰矿-长石-生物石-石英-钛铁矿-液体的变质峰值矿物组合在温度高达 750 °C、压力为 0.6 GPa 时达到平衡。随后的逆冲消耗了石榴石。矿物置换和熔体结晶涉及矽线石、白云母、钾长石和石英。研究结果表明,根据西部片麻岩区西北部的蚀变岩和高压花岗岩遗迹,矽卡岩片麻岩发生了变质逆冲。
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