Kyanite microstructural and microchemical characteristics reveal differences in growth, deformation and chemical modification: A case study from the Paleoproterozoic suture zone of South Harris, NW Scotland

IF 2.9 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Lithos Pub Date : 2024-08-13 DOI:10.1016/j.lithos.2024.107748
Eleanore Blereau , Sandra Piazolo , Patrick Trimby , Etienne Skrzypek
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Abstract

Based on petrological association, cathodoluminescence (CL), trace element signatures and orientation relationships, two generations of kyanite are distinguished in a high temperature, high pressure garnet-biotite-aluminosilicate bearing migmatite of South Harris, NW Scotland. The migmatite shows a garnet and biotite rich domain (Grt-Bt domain) which is cut at a low angle by a dominantly coarse-grained plagioclase-quartz leucosome. In addition, a fine-grained plagioclase-quartz-kyanite domain (Plag-Qtz-Ky domain) is present intercalated with the Grt-Bt domain and subparallel to the plagioclase-quartz domain. Type 1 kyanite is coarse grained and associated with Bt clusters and garnet within the Grt-Bt domain. It grew relatively early, syn- to post-garnet growth, in a suprasolidus environment resulting in crystallographically determined oscillatory CL and trace element zoning. Grains record evidence of progressive deformation in the crystal plastic regime, where deformation is accommodated by dislocation glide, climb and deformation twinning. The dominant activated slip system is (100)<001> with minor component of <100>, while deformation twins show a ∼ 180° rotation around ∼<001> axis and a twin plane near (001). Grains appear to be impervious to deformation induced diffusion with all zoning remaining sharp despite crystal plastic deformation. Grains in direct contact with the Plag-Qtz-Ky domain show late modification of the CL and trace element signature suggesting melt-mediated interface-coupled dissolution-precipitation reaction. This modification resulted in crosscutting lobate high trace element regions and irregular rims with low Cr and V content. These rims show similar CL and trace element characteristics as Type 2 kyanite which are exclusively seen within the Plag-Qtz-Ky domain suggesting that Type 2 grains are cogenetic with Type 1 rims. Type 2 grains are finer grained than Type 1 grains and show near uniform CL and trace element distributions with rare oscillatory zoned and relatively higher Cr & V bright cores. Type 2 show either no or very localized internal deformation features. However, they exhibit a clear shape preferred orientation which coincides with a crystallographic preferred orientation where the longest shape axis is parallel to <001>. We propose that Type 2 kyanite grains underwent melt-present deformation by rigid body rotation in an externally derived melt with different trace element chemistry than the host rock. This melt thus interacted chemically by melt-mediated interface-coupled dissolution-precipitation reactions with the surrounding rocks forming the Type 1 rims.

Our study shows detailed analysis of kyanite is an important tool for giving constraints on the deformation, P–T and melting history of high-grade metamorphic rocks and migmatites.

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闪锌矿的微观结构和微观化学特征揭示了生长、变形和化学修饰方面的差异:苏格兰西北部南哈里斯古生代缝合带案例研究
根据岩石学关联、阴极发光(CL)、微量元素特征和取向关系,在苏格兰西北部南哈里斯的高温高压石榴石-生物沸石-铝硅酸盐辉长岩中区分出两代辉长岩。该伟晶岩显示了一个富含石榴石和生物沸石的区域(Grt-Bt 区域),该区域被一个以粗粒斜长石-石英白云母为主的低角度切割。此外,还有一个细粒斜长岩-石英-闪长岩结构域(Plag-Qtz-Ky 结构域)与 Grt-Bt 结构域夹层,与斜长岩-石英结构域近平行。1型闪长岩颗粒较粗,在Grt-Bt域内与Bt团块和石榴石伴生。它的生长时间相对较早,即石榴石生长的同期至后期,生长在超固结环境中,导致晶体学上确定的振荡 CL 和微量元素分带。晶粒记录了在晶体塑性机制下的渐进变形,变形是由位错滑行、攀升和变形孪晶所容纳的。主要的活化滑移系统为 (100)<001>,次要成分为 <100>,而变形孪晶则围绕 ∼ <001>轴旋转 ∼ 180°,孪晶平面靠近 (001)。晶粒似乎不受形变引起的扩散的影响,尽管发生了晶体塑性变形,但所有分区仍保持锋利。与 Plag-Qtz-Ky 域直接接触的晶粒显示出 CL 和微量元素特征的后期改变,这表明熔体介导的界面耦合溶解沉淀反应。这种改变导致了交叉切割的高微量元素叶状区域以及低铬和低钒含量的不规则边缘。这些边缘显示出与 2 型闪锌矿相似的 CL 和微量元素特征,而 2 型闪锌矿只出现在 Plag-Qtz-Ky 域内,这表明 2 型晶粒与 1 型边缘是同生的。2 型晶粒比 1 型晶粒更细,显示出近乎均匀的 CL 和微量元素分布,具有罕见的振荡带状和相对较高的 Cr & V 明亮核心。第 2 类晶粒没有或仅有局部内部变形特征。然而,它们表现出明显的形状优选取向,这与晶体学上的优选取向相吻合,其中最长的形状轴平行于<001>。我们认为,2 型闪长岩晶粒是在痕量元素化学性质与主岩不同的外部衍生熔体中,通过刚体旋转而发生熔现变形的。我们的研究表明,对闪锌矿的详细分析是对高品位变质岩和伟晶岩的变形、P-T和熔融历史进行约束的重要工具。
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来源期刊
Lithos
Lithos 地学-地球化学与地球物理
CiteScore
6.80
自引率
11.40%
发文量
286
审稿时长
3.5 months
期刊介绍: Lithos publishes original research papers on the petrology, geochemistry and petrogenesis of igneous and metamorphic rocks. Papers on mineralogy/mineral physics related to petrology and petrogenetic problems are also welcomed.
期刊最新文献
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