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The effect of Mn on mineral stability in metapelites revisited: new a–x relations for manganese-bearing minerals

机译:锰对变质矿物稳定性的影响再探:含锰矿物的新的a–x关系

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The a–x relations recently presented in White et al. (2014, Journal of Metamorphic Geology, 32, 261–286) are extended to include MnO. This provides a set of internally consistent a–x relations for metapelitic rocks in the MnO–Na_2O–CaO–K_2O–FeO–MgO–Al_2O_3–SiO_2–H_2O–TiO_2–O_2 (MnNCKFMASHTO) system. The mixing parameters for the Mn-bearing minerals were estimated using the micro-φ approach of Powell et al. (2014, Journal of Metamorphic Geology, 32, 245–260). Then the Mn-end-member thermodynamic properties were calibrated using a database of co-existing minerals involving literature data from rocks and from experiments on natural materials. Mn-endmembers were calibrated for orthopyroxene, cordierite, staurolite, chloritoid, chlorite, biotite, ilmenite and hematite, assuming known properties for the garnet end-member spessartine. The addition of MnO to phase diagram calculations results in a marked expansion of the stability of garnetbearing assemblages. At greenschist facies conditions garnet stability is extended down temperature. At amphibolite facies conditions, the garnet-in boundary shifts to lower pressure. While the addition of MnO greatly influences the stability of garnet, it has relatively little effect on the stability of other common metapelitic minerals, with the resultant diagrams being topologically very similar to those calculated without MnO. Furthermore, the addition of MnO in the amounts measured in most metapelites has only a small effect on the mode of garnet, with calculated garnet modes remaining smaller than 1% in the P–T range outside its predicted Mn-free P–T range.
机译:White等人最近提出了a–x关系。 (2014,Journal of Metamorphic Geology,32,261–286)扩展为包括MnO。这为MnO–Na_2O–CaO–K_2O–FeO–MgO–Al_2O_3–SiO_2–H_2O–TiO_2–O_2(MnNCKFMASHTO)系统中的变质岩提供了一组内部一致的ax关系。含锰矿物的混合参数使用Powell等人的micro-φ方法估算。 (2014年,《变质地质杂志》,32,245–260)。然后,使用共存矿物的数据库校准Mn端成员的热力学性质,该数据库涉及岩石和天然材料实验的文献数据。假设石榴石末端成员斯佩沙汀具有已知的特性,则对锰末端成员进行邻苯二茂,堇青石,堇青石,类胡萝卜素,亚氯酸盐,黑云母,钛铁矿和赤铁矿的校准。在相图计算中添加MnO会导致石榴石组合的稳定性显着扩展。在绿岩相条件下,石榴石的稳定性在低温下会延长。在闪石相条件下,石榴石进入边界转移到较低的压力。尽管MnO的添加极大地影响了石榴石的稳定性,但它对其他常见的变质矿物的稳定性影响相对较小,其生成的图在拓扑上与不含MnO时所计算的图非常相似。此外,在大多数变质岩中测得的MnO的添加量对石榴石的模态影响很小,在其预测的无Mn PT范围之外的P–T范围内,计算出的石榴石模式保持小于1%。

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