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The Effects of Disequilibrium and Deformation on the Mineralogical Evolution of Quartz Diorite During Metamorphism in the Eclogite Facies

机译:榴辉岩相变质过程中不平衡和变形对石英闪长岩矿物学演化的影响

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摘要

In the Sesia Zone, Western Alps, a large volume of orthogneiss formed as a result of eclogite fades metamorphism and deformation of quartz diorite during early Alpine underthrusting and subduction. Rare lenses of undeformed metaquartz diorite, preserved within the orthogneiss, represent an early stage in the evolution of this latter rock type. The metamorphic and microstructural evolution of the orthogneiss in the eclogite fades has been reconstructed from studies of gradational contacts between undeformed and strongly deformed rocks. High pressure transformations of the original igneous plagioclase + biotite + quartz assemblage to jadeitic pyroxene (Jd0.95 -0.85 + zoisite + quartz + garnet + 2 muscovites developed prior to deformation. Slow intergranular diffusion resulted in a state of disequilibrium between small textural domains in the metaquartz diorite. The compositions of the phases of the undeformed metaquartz diorite do not reflect the bulk rock composition, but were controlled by their position relative to reactant phases. The jadeitic pyroxenes, for example, formed in localized domains which originally consisted of sodic plagioclase whereas omphacite was the equilibrium pyroxene for the bulk rock composition. Mineralogical changes which occurred during subsequent deformation of the metaquartz diorite are interpreted as resulting from a progressive enlargement of equilibrium domains and the partial equilibration of mineral compositions to the bulk rock composition rather than from changes in pressure and temperature. Initially during high-strain deformation, fine-grained aggregates of jadeitic pyroxene + quartz + zoisite (originally pseudomorphing plagioclase) are inferred to have deformed by a mechanism of grain boundary sliding accommodated by diffusive mass transfer. Muscovite and garnet compositions homogenized during the deformation but due to slow intracrystalline diffusion, pyroxene compositions (Jd0.95 -0.80) remained metastable. The coarsening of pyroxene eventually terminated deformation by grain boundary sliding and this mineral subsequently deformed by intracrystalline plastidty. This latter process was accompanied by and perhaps catalysed a change in pyroxene composition from metastable jadeite towards omphacite by a reaction involving the resorption of garnet and the nucleation and growth of paragonite. The resulting orthogneiss consists of quartz + omphadte + garnet + phengite + paragonite + zoisite. The rock is characterized by a broad range of pyroxene compositions (Jd0.8 -0.5) due to the incomplete equilibration of this mineral to the bulk rock composition and a lack of Fe-Mg exchange equilibrium between pyroxene and garnet. However, in contrast to the undeformed metaquartz diorite, there are no obvious textural indications of disequilibrium between phases in the orthogneiss
机译:在西部阿尔卑斯山脉的Sesia地区,早期的阿尔卑斯俯冲和俯冲过程中,由榴辉岩形成的大量正片麻岩使石英闪长岩变质和变形消退。保留在正长片岩中的未变形的变石英闪长岩的稀有透镜代表了后一种岩石类型演化的早期阶段。通过对未变形岩石和强烈变形岩石之间的梯度接触进行研究,重建了榴辉岩在榴辉岩褪色过程中的变质和微观结构演化。原始火成斜生斜长石+黑云母+石英组合物高压转变为翡翠辉石(Jd0.95 -0.85 +锂沸石+石英+石榴石+ 2个粘胶体,在变形前形成。未变形的偏石英闪长岩的相组成不能反映块状岩石的组成,但受其相对于反应物相的位置的控制,例如,翡翠辉石在最初由钠斜长石组成的局部区域中形成。辉石闪长岩随后变形过程中发生的矿物学变化被解释为平衡域的逐步扩大以及矿物成分与块状岩石成分的部分平衡而不是变化引起的矿物学变化。在压力和t皇帝最初,在高应变变形过程中,通过扩散传质适应的晶界滑动机制,推断出翡翠辉石+石英+辉绿岩(原为假晶斜长石)的细粒聚集体发生了变形。在变形过程中白云母和石榴石成分均质,但由于晶体内扩散缓慢,辉石成分(Jd0.95-0.80)仍处于亚稳态。辉石的粗化最终通过晶界滑动终止了变形,并且该矿物随后由于晶内塑性而变形。后一过程伴随着并可能通过与石榴石的吸收以及方石的成核和生长有关的反应而使辉石的组成从亚稳玉转变为辉石。所得的片状片麻岩由石英+杂石+石榴石+锂铁矿+钠钙石+锂沸石组成。岩石的特点是辉石成分广泛(Jd0.8 -0.5),这是由于该矿物与大块岩石成分的不完全平衡以及辉石与石榴石之间缺乏铁-镁交换平衡所致。但是,与未变形的变石英闪长岩相比,在直生片麻岩中没有明显的组织学迹象表明相之间存在不平衡。

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