首页> 外文期刊>European journal of mineralogy >The system MgO-Al_2O_3-SiO_2-Cr_2O_3 revisited: reanalysis of Doroshev et al.'s (1997) experiments and new experiments
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The system MgO-Al_2O_3-SiO_2-Cr_2O_3 revisited: reanalysis of Doroshev et al.'s (1997) experiments and new experiments

机译:重新探讨了MgO-Al_2O_3-SiO_2-Cr_2O_3系统:Doroshev等人(1997)实验和新实验的重新分析

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摘要

New experimental data are presented on the partitioning of Cr and Al between spinel-picrochromite and corundumeskolaite solid solutions at 5.0 GPa and 1300, 1500 ℃ and garnet-spinel-orthopyroxene equilibria at 3.0 and 4.0 GPa and 1000 ℃. The experimental products of Doroshev et al.'s (1997) experiments on mineral equilibria in the MASCr system were reanalysed in order to clarify the direction and mechanism of approach to equilibrium. Detailed analysis of mineral compositions was carried out by electron microprobe with high spatial resolution, which demonstrated complex zoning patterns of minerals. In experiments with pure pyrope in the starting material, garnet shows simple zoning with Cr-rich seams mantling relicts of aluminous garnet. In experiments with Cr-rich garnets in the starting mixture (Cr/(Cr + Al) = 0.3-0.8), more complex patterns were observed. Knorringite-rich garnet cores are overgrown in sequence by Al-rich (X_(Cr) = 0.1-0.2) and then Cr-rich zones. The analytical data allowed us to establish the direction of approach to equilibrium for particular grains, which eliminated the path-looping problem. The results were compared to published experimental data on garnet, orthopyroxene, spinel, and eskolaite equilibria in the MAS and MASCr systems. It was shown that all the data can be described by a simple thermodynamic model, if the uncertainty of analytical results is taken into account.
机译:提出了在5.0 GPa和1300、1500℃下尖晶石-亚铬铁矿和刚玉方铁矿固溶体中Cr和Al的分配以及在3.0和4.0 GPa和1000℃下石榴石-尖晶石-邻二甲苯平衡的新实验数据。重新分析了Doroshev等人(1997)关于MASCr系统中矿物平衡的实验产品,以阐明达到平衡的方向和机理。用具有高空间分辨率的电子探针对矿物成分进行了详细的分析,证明了矿物的复杂分区模式。在以纯吡啶氧化物为起始原料的实验中,石榴石显示了富含铬的接缝和铝石榴石残渣的简单分区。在起始混合物中富含Cr的石榴石(Cr /(Cr + Al)= 0.3-0.8)的实验中,观察到更复杂的图案。富含钾钠钙榴石的石榴石芯依次由富铝(X_(Cr)= 0.1-0.2)和富铬区过度生长。分析数据使我们能够为特定晶粒建立接近平衡的方向,从而消除了路径回路问题。将结果与已发布的有关MAS和MASCr系统中石榴石,邻苯二酚,尖晶石和依斯科莱特平衡的实验数据进行了比较。结果表明,如果考虑分析结果的不确定性,则所有数据都可以用一个简单的热力学模型来描述。

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