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SNC meteorites: basaltic igneous processes on Mars.

机译:SNC陨石:火星上的玄武岩火成岩过程。

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摘要

A group of 32 meteorites, the SNC (Shergotty, Nakhla, Chassigny) group, was derived from Mars as a product of 4–7 ejection events, probably from Tharsis and Elysium–Amazonis. The SNCs either have basaltic mineralogy or some are ultramafic cumulates crystallized from basaltic melts. The SNCs can be classified both petrographically and geochemically. We classify the shergottite SNC meteorites on the basis of their light rare earth element (LREE) depletion into highly depleted, moderately depleted and slightly depleted. The slightly depleted samples (which are mainly but not exclusively aphyric basalts) show high log10 fO2 values (QFM −1.0, where QFM is quartz–fayalite–magnetite). Highly depleted samples, which are mainly olivine-phyric basalts, have low log10 fO2 values (QFM −3.5). On the basis of mixing calculations between La/Lu and 87Sr/86Sr we favour models linking the correlation between LREE abundances and log10 fO2 to mantle heterogeneity rather than contamination by oxidized, LREE-rich crustal fluids. SNC chemistry in general reflects the Fe-rich mantle of Mars (which contains twice as much FeO as the Earth's mantle), the late accretion of chondritic material into the mantle, and possibly the presence of a plagioclase-rich magma ocean, which acted to variably deplete the mantle in Al. The high FeO contents of the SNC melts are associated with high melt densities (allowing the ponding of large magma bodies) and low viscosities, both of which are consistent with the large scale of many observed martian lava flows.
机译:一组32个陨石SNC(Shergotty,Nakhla,Chassigny)是火星产生的4-7次喷射事件的产物,可能来自Tharsis和Elysium-Amazonis。这些SNC具有玄武岩矿物学或一些是从玄武岩熔体中结晶出来的超镁铁质堆积物。 SNC可以在岩石学和地球化学上进行分类。我们根据其轻稀土元素(LREE)的损耗将Sergottite SNC陨石分类为高度贫化,中度贫化和轻度贫化。稍微耗尽的样品(主要但不是排他性玄武岩)显示出较高的log10 fO2值(QFM -1.0,其中QFM为石英-铁橄榄石-磁铁矿)。高度消耗的样品(主要是橄榄石玄武岩)的log10 fO2值较低(QFM -3.5)。根据La / Lu与87Sr / 86Sr之间的混合计算,我们倾向于将LREE丰度与log10 fO2之间的相关性与地幔非均质性联系起来的模型,而不是氧化的,富含LREE的地壳流体的污染联系在一起的模型。 SNC的化学反应通常反映出火星上富含铁的地幔(其FeO含量是地球上地幔的两倍),软骨岩物质向地幔中的后期积聚,以及可能存在的斜长石浆岩浆海洋,不同程度地消耗了Al的地幔。 SNC熔体的高FeO含量与高熔体密度(允许堆积大的岩浆体)和低粘度有关,这两者与许多观察到的火星熔岩流的大规模一致。

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