首页> 外文期刊>Contributions to Mineralogy and Petrology >Long length scales of element transport during reaction texture development in orthoamphibole-cordierite gneiss: Thor-Odin dome, British Columbia, Canada
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Long length scales of element transport during reaction texture development in orthoamphibole-cordierite gneiss: Thor-Odin dome, British Columbia, Canada

机译:在邻苯二酚-堇青石片麻岩中反应织构发展过程中元素迁移的长尺度:加拿大不列颠哥伦比亚省的Thor-Odin穹顶

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First-order factors controlling the textural and chemical evolution of metamorphic rocks are bulk composition and pressure–temperature–time (P–T–t) path. Although it is common to assume that major element bulk composition does not change during regional metamorphism, rocks with reaction textures such as corona structures record evidence for major changes in effective bulk composition (EBC) and therefore provide significant insight into the scale, pathways, and mechanisms of element transport during metamorphism. Quantifying changes in EBC is essential for petrologic applications such as calculation of phase diagrams (pseudosections). The progressive growth of complex corona structures on garnet and Al2SiO5 porphyroblasts in orthoamphibole-cordierite gneiss Thor-Odin dome (British Columbia, Canada) reduced the EBC volume of the rock during metamorphism and therefore had a dramatic effect on the evolution of the stable mineral assemblage. These rocks contain a chemical and textural record of metamorphic reactions and preserve 3D networks (reaction pathways) connecting corona structures. These coronal networks record long (>cm) length scales of localized element transport during metamorphism. P–T, T–X, and P–X pseudosections are used to investigate the control of effective bulk composition on phase assemblage evolution. Despite textural complexity and evidence for disequilibrium, mineral assemblages and compositions were successfully modeled and peak metamorphic conditions estimated at 750°C and 9 kbar. These results illustrate how textural and chemical changes during metamorphism can be evaluated using an integrated petrographic and pseudosection approach, highlight the importance of effective bulk composition choice for application of phase equilibria methods in metamorphic rocks, and show how corona structures can be used to understand the scale of compositional change and element transport during metamorphism.
机译:控制变质岩质地和化学演化的一级因素是体积组成和压力-温度-时间(PT-t)路径。尽管通常认为主要元素的体组成在区域变质过程中不会发生变化,但是具有反应纹理(例如电晕结构)的岩石记录了有效体组成(EBC)的重大变化的证据,因此可提供对尺度,途径和密度的重要了解。变质过程中元素转运的机理。量化EBC的变化对于岩石学应用(例如相图(伪截面)的计算)至关重要。在邻苯二酚-堇青石片麻岩片麻岩的Thor-Odin圆顶(加拿大不列颠哥伦比亚省)中,石榴石和Al 2 SiO 5 卟啉细胞上复杂的电晕结构的逐步生长降低了其EBC量。岩石在变质过程中,因此对稳定矿物组合的演化具有显着影响。这些岩石包含变质反应的化学和质地记录,并保留连接电晕结构的3D网络(反应路径)。这些冠状网络记录了变质过程中局部元素运输的长(> cm)长尺度。 P–T,T–X和P–X伪截面用于研究有效的大分子组成对相组装演化的控制。尽管结构复杂且存在不平衡的证据,但仍成功地模拟了矿物组成和成分,并估计了在750°C和9 kbar下的峰值变质条件。这些结果说明了如何使用整合的岩相学和假剖面方法评估变质过程中的组织和化学变化,突出了有效选择大体积成分对于变质岩石中相平衡方法应用的重要性,并显示了如何利用电晕结构来理解变质作用。变质过程中成分变化的尺度和元素运移。

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