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Oxygen regime of granulite metamorphism: Modeling by the method of Gibbs free energy minimization

机译:粒状变质作用的氧状态:吉布斯自由能最小化方法的建模

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Using a new version of the Selektor-C program package for the minimization of Gibbs free energy, physicochemical modeling was conducted for real mineral assemblages from the rocks of the Okhotsk and Chogar complexes and the Larba block, which crystallized under granulite-facies conditions. Considering a two-reservoir fluid-rock system, model assemblages of metapelites and metabasites adequate to natural assemblages were reconstructed by the method of Gibbs potential minimization. The P-T parameters of crystallization, oxygen potential, and the composition of the deep fluid that produced the assemblages were estimated. It was shown that the character of oxygen behavior can be dual under granulite-facies metamorphic conditions: inert behavior in rocks enriched in magnetite and (or) hemoilmenite and perfectly mobile behavior (after D.S. Korzhinskii) in rocks devoid of these minerals. It was shown that the oxygen regime is controlled by the degree of complete or partial leveling of oxygen potential between the deep reduced fluid and the rock in agreement with their oxygen capacities.
机译:使用新版本的Selektor-C程序包以最小化Gibbs自由能,对来自鄂霍次克和Chogar配合物以及Larba块的岩石中的真实矿物组合物进行了物理化学建模,这些组合物在花岗石相条件下结晶。考虑到两个储层的流体-岩石系统,通过吉布斯电位最小化方法重建了适合天然组合的变质岩和变质岩的模型组合。估算了结晶的P-T参数,氧势和产生该集合的深层流体的组成。结果表明,在花岗石相变质条件下,氧的行为特征可以是双重的:富含磁铁矿和(或)堇青石的岩石中的惰性行为,以及不含这些矿物的岩石中的完美移动性(在D.S. Korzhinskii之后)。结果表明,深层还原流体与岩石之间的氧势完全或部分水平与其氧容量相符,从而控制了氧的状态。

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