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Parental magmas of mafic layered intrusions: Using an updated COMAGMAT model for calculations of sulfide-silicate cotectics during their crystallization

机译:MAFIC分层入侵的父母岩浆:在结晶过程中使用更新的COMAGMAT模型进行硫化物 - 硅酸盐硅酸盐的计算

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@@1 Introduction25 years ago we proposed a petrologic technique (called geochemical thermometry) designed to resolve inverse problems for mafic igneous rocks, including estimates of the initial temperature, trapped liquid and mineral compositions, as well as original modal proportions, as "recorded" by the whole-rock chemistry (Frenkel et al. 1988; Ariskin, 1999) . This method is based on an assumption that any crystal-liquid mush that produces a completely crystalline rock should pass through a stage when relative movements of solids and interstitial liquid have ceased, so that the system may be considered as closed. In this case, it is theoretically feasible to calculate all thermodynamic parameters for the initial system, using phase equilibria models designed for the calculation of equilibrium melting/crystallization relations in igneous rocks. In this paper we present results of applications of this approach for modeling the composition of parental magmas of several mafic layered intrusions, followed by quantification of sulfide-silicate cotectics during crystallization of these parents.
机译:@@ 1简介25年前我们提出了一种探测器的岩石技术(称为地球化学温度),旨在解决MAFIC火岩的逆问题,包括初始温度,捕获的液体和矿物质组合物以及原始模态比例,如“记录”由全岩化学(Frenkel等,1988; Ariskin,1999)。该方法基于假设产生完全结晶岩石的任何晶体液体糊状物应在固体和间质液体停止的相对运动时通过阶段,使得系统可以被认为是封闭的。在这种情况下,计算初始系统的所有热力学参数是理论上可行的,使用专门用于计算火岩中的平衡熔化/结晶关系的相平衡模型。在本文中,我们提出了这种方法的应用结果,用于在这些父母的结晶过程中进行硫化物 - 硅酸盐硅酸盐的组成来建模这种方法。

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