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Melting of the Martian mantle from 1.0 to 4.5 GPa

机译:火星地幔从1.0 GPa熔化到4.5 GPa

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To investigate the chemical composition of possible primitive melts of the Martian mantle, we performed melting experiments of a model Martian mantle derived by Dreibus and W?nke (DWM) at pressures from 1.0 to 4.5 GPa. The chemical compositions of partial melts are systematically related to pressure. The partial melts at pressure of 1.0 GPa in spinel stability field show high Al_(2)O_(3) and low FeO contents. The partial melts at higher pressure in garnet stability field are, however, characterized by a relatively high FeO content, low Al_(2)O_(3) content and high CaO/Al_(2)O_(3) ratio. In garnet stability field, clinopyroxene (= Ca-rich phase) contribute significantly to melt formation near the solidus temperature, although garnet (= Al-rich phase) is stable at temperature above solidus. Therefore Al-poor and Ca-rich partial melt are formed at higher pressure. Comparing the shergottite chemistry with the chemical trends of the partial melts obtained by the experiments, we suggest that one of basaltic shergottite with a high Al_(2)O_(3) and low CaO/Al_(2)O_(3) ratio, QUE94201, resembles the composition of the DWM partial melts in major-element chemistry in a low degree (<20%) partial melt of DWM at pressure of 1.0 GPa and temperature of 1360 °C. We conclude that the olivine-poor (or olivine-free) basaltic magma with low CaO/Al_(2)O_(3) ratio and high Al_(2)O_(3 )could be primitive melts derived from the upper mantle of Mars if the actual Martian mantle is similar in composition to DWM.
机译:为了研究火星地​​幔可能的原始熔体的化学成分,我们对Dreibus和W?nke(DWM)衍生的模型火星地幔在1.0至4.5 GPa的压力下进行了熔化实验。部分熔体的化学组成与压力有系统的关系。尖晶石稳定性场中压力为1.0 GPa时的部分熔体显示出较高的Al_(2)O_(3)和较低的FeO含量。然而,石榴石稳定性场中较高压力下的部分熔体的特征是:FeO含量相对较高,Al_(2)O_(3)含量较低,CaO / Al_(2)O_(3)比较高。在石榴石稳定性领域中,尽管石榴石(=富铝相)在高于固相线的温度下稳定,但斜ino石(=富Ca相)在固相线温度附近对熔体形成有显着贡献。因此,在较高压力下形成贫铝和富钙的部分熔体。比较通过实验获得的部分熔融物的斜方晶石化学趋势,我们提出一种具有高Al_(2)O_(3)和低CaO / Al_(2)O_(3)比的玄武质斜方晶石之一,QUE94201类似于DWM部分熔体在主要元素化学中的组成,在1.0 GPa的压力和1360°C的温度下DWM的低度(<20%)部分熔体。我们得出结论,如果CaO / Al_(2)O_(3)比低且Al_(2)O_(3)高的橄榄石贫(或不含橄榄石)玄武岩岩浆可能是源自火星上地幔的原始熔体实际的火星地幔在构造上与DWM相似。

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