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首页> 外文期刊>Contributions to Mineralogy and Petrology >The stability of hydrous phases beyond antigorite breakdown for a magnetite-bearing natural serpentinite between 6.5 and 11GPa
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The stability of hydrous phases beyond antigorite breakdown for a magnetite-bearing natural serpentinite between 6.5 and 11GPa

机译:在6.5至11GPa之间的磁铁含有天然蛇形素的耐含油术分解的含水阶段的稳定性

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Phase relations for a natural serpentinite containing 5wt% of magnetite have been investigated using a multi-anvil apparatus between 6.5 and 11GPa and 400-850 degrees C. Post-antigorite hydrous phase assemblages comprise the dense hydrous magnesium silicates (DHMSs) phase A (11.3wt% H2O) and the aluminous phase E (Al-PhE, 11.9wt% H2O). In addition, a ferromagnesian hydrous silicate (11.1wt% H2O) identified as balangeroite (Mg,Fe)(42)Si16O54(OH)(40), typically described in low pressure natural serpentinite, was found coexisting with Al-PhE between 650 and 700 degrees C at 8GPa. In the natural antigorite system, phase E stability is extended to lower pressures (8GPa) than previously reported in simple chemical systems. The reaction Al-phase E=garnet+olivine+H2O is constrained between 750 and 800 degrees C between 8 and 11 GPa as the terminal boundary between hydrous mineral assemblages and nominally anhydrous assemblages, hence restricting water transfer into the deep mantle to the coldest slabs. The water storage capacity of the assemblage Al-PhE+enstatite (high-clinoenstatite)+olivine, relevant for realistic hydrated slab composition along a relatively cold temperature path is estimated to be ca. 2wt% H2O. Attempts to mass balance run products emphasizes the role of magnetite in phase equilibria, and suggests the importance of ferric iron in the stabilization of hydrous phases such as balangeroite and aluminous phase E.
机译:使用6.5至11gPa和400-850℃之间的多砧液装置研究了含有5wt%的磁铁矿的天然蛇形矿的相位关系。抗抗岩液相组合的抗抗石液相硅酸盐(DHMSS)相A(11.3 WT%H 2 O)和铝相E(Al-Phe,11.9wt%H 2 O)。此外,发现通常在低压天然蛇形石中鉴定为BALANCOITE(Mg,Fe)(42)Si16O54(OH)(40)的铁圆形硅酸盐(11.1wt%h2o),发现在650和650之间与Al-phe共存。 8GPA的700℃。在天然抗真的岩系中,相E稳定性延伸到较低的压力(8GPa),比在简单的化学系统中先前报道。反应Al-each e = Garnet + Olivine + H 2 O受到8至11GPa之间的约8和1100摄氏度的约束,因为含水矿物组合物和名义上无水组合之间的端子边界,因此将水转移到最寒冷的板坯中。据估计,沿着相对寒冷的温度路径沿着逼真的水合板组合物相关的组合Al-Phe + Enstatate(高层核酯)+橄榄石的储水能力估计是Ca. 2wt%h2o。对大规模平衡运行产品的企图强调磁铁矿在相平衡中的作用,并表明铁铁在含水阶段稳定的诸如Balangeroite和铝阶段E.的重要性。

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