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首页> 外文期刊>Journal of geophysical research. Planets >Mars Odyssey Gamma Ray Spectrometer elemental abundances and apparent relative surface age: Implications for Martian crustal evolution
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Mars Odyssey Gamma Ray Spectrometer elemental abundances and apparent relative surface age: Implications for Martian crustal evolution

机译:火星奥德赛伽玛射线光谱仪的元素丰度和相对表层年龄:对火星地壳演化的启示

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摘要

Quantifying secular variations in the chemical composition of the Martian crust provides unique insights into the processes that have guided the evolution of the Martian crust-mantle system. Using global abundances for a suite of elements determined by the Gamma Ray Spectrometer (GRS) on board the Mars Odyssey spacecraft and global mapping of apparent surface age adapted from existing geologic maps in the USGS Martian Geologic Investigation series, we report the average abundance of K, Th, Fe, Cl, H, and Si for the major Martian geologic epochs (Noachian, Hesperian, and Amazonian). Average GRS-determined K and Th abundances generally decrease by 9% and 7%, respectively, between the Hesperian and the Amazonian, possibly implying evolving magma chemistry throughout major resurfacing events (although the effects of surficial alteration processes cannot be entirely discounted). GRS-determined Fe and Cl averages increase by 12% and 19%, respectively, with younger apparent relative surface age, suggesting the possible mobilization and transport of these elements through aqueous processes (although an igneous origin for the variation in Fe also cannot be excluded). While H abundance does vary with surface age, the relationship is likely not governed by geologic processes. No statistically reliable apparent surface age relation was found for Si.
机译:量化火星地壳化学成分的长期变化,可以为指导火星地壳—幔系统演化的过程提供独特的见解。利用火星奥德赛号航天器上伽马射线光谱仪(GRS)确定的一系列元素的全球丰度,以及根据USGS火星地质调查系列中现有地质图改编的表观年龄的全球绘图,我们报告了K的平均丰度,Th,Fe,Cl,H和Si用于主要的火星地质时期(Noachian,Hesperian和Amazonian)。在Hesperian和Amazonian之间,由GRS确定的平均K和Th丰度通常分别下降9%和7%,这可能意味着整个主要重铺事件中岩浆化学的演化(尽管不能完全抵消表层蚀变过程的影响)。 GRS测定的Fe和Cl的平均值随着表观相对年轻的年龄而分别增加了12%和19%,表明这些元素可能通过水过程动员和运输(尽管也不能排除火成因引起Fe的变化) )。尽管氢的丰度确实随地表年龄而变化,但这种关系可能不受地质过程的控制。对于Si,没有发现统计上可靠的表观表面年龄关系。

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