大气化学和火星深层硫循环之间的同位素联系
Heather B Franz1, Sang-Tae Kim2, James Farquhar3
11] Center for Research and Exploration in Space Science and Technology, NASA Goddard Space Flight Center, Greenbelt, Maryland 20771, USA [2] Department of Geology and Earth System Science Interdisciplinary Center, University of Maryland, College Park, Maryland 20742, USA.
Nature
|April 18, 2014
概括
火星石揭示,硫同化成 magma 在整个火星历史中是常见的. 这一过程由硫同位素标记所证明,也突出显示了与地球相比,火星上不同的大气化学成分.
科学领域:
- 行星科学 行星科学
- 地质化学 地质化学
- 同位素地球化学 同位素地球化学
背景情况:
- 火星石提供了对地球地质和大气过程的洞察力.
- 了解地物质的岩同化对于解释地球化学特征至关重要.
- 在丰富的shergottites中轻稀土元素的起源是有争议的 (地同化与地幔混合).
研究的目的:
- 研究火星石中的硫同位素系统学,以了解地的同化.
- 为了确定火星岩石中硫同化程度和时间.
- 为了比较火星大气中的硫化学与地球上的硫化学.
主要方法:
- 在40颗火星石中对硫的同位素分析,包括shergottites,nakhlites,Allan Hills 84001和Chassigny.
- 对硫同位素特征的岩性硫化物和硫酸盐的分析.
主要成果:
- 强有力的证据表明,硫在整个地质历史中被广泛同化到火星的岩石中.
- 观察到硫同位素特征,表明质量独立分离 (MIF).
- MIF的签名表明,在岩上升和安置过程中,硫的同化.
- 火星大气中的硫处理,在石中保存,显示出与地球不同的签名.
结论:
- 火星的岩石吸收硫是整个地球历史上普遍存在的过程.
- 观察到的MIF签名为地的同化和安置过程提供了证据.
- 地球和火星大气层之间占主导地位的硫化学存在根本的差异.
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