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Carbonate formation events in ALH 84001 trace the evolution of the Martian atmosphere

机译:ALH 84001中的碳酸盐形成事件追踪火星大气的演变

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摘要

Carbonate minerals provide critical information for defining atmosphere–hydrosphere interactions. Carbonate minerals in the Martian meteorite ALH 84001 have been dated to ∼3.9 Ga, and both C and O-triple isotopes can be used to decipher the planet’s climate history. Here we report Δ17O, δ18O, and δ13C data of ALH 84001 of at least two varieties of carbonates, using a stepped acid dissolution technique paired with ion microprobe analyses to specifically target carbonates from distinct formation events and constrain the Martian atmosphere–hydrosphere–geosphere interactions and surficial aqueous alterations. These results indicate the presence of a Ca-rich carbonate phase enriched in 18O that formed sometime after the primary aqueous event at 3.9 Ga. The phases showed excess 17O (0.7‰) that captured the atmosphere–regolith chemical reservoir transfer, as well as CO2, O3, and H2O isotopic interactions at the time of formation of each specific carbonate. The carbon isotopes preserved in the Ca-rich carbonate phase indicate that the Noachian atmosphere of Mars was substantially depleted in 13C compared with the modern atmosphere.
机译:碳酸盐矿物为定义大气-水圈相互作用提供了关键信息。火星陨石ALH 84001中的碳酸盐矿物可追溯到3.9 Ga,C和O-三重同位素都可以用来解释地球的气候历史。在这里,我们报告了至少两种碳酸盐品种的ALH 84001的Δ 17 O,δ 18 O和δ 13 C数据,使用阶梯式酸溶解技术与离子微探针分析相结合,可专门针对来自不同形成事件的碳酸盐,并限制火星大气-水圈-地球圈的相互作用和表面水蚀变化。这些结果表明存在一个富含 18 O的富含钙的碳酸盐相,该相在一次含水事件之后的3.9 Ga下形成。该相显示过量的 17 O(0.7 ‰)记录了每种特定碳酸盐形成时的大气-稀土化学储集层转移以及CO2,O3和H2O同位素相互作用。富含Ca的碳酸盐相中保存的碳同位素表明,与现代大气相比,火星的Noachian大气在 13 C中基本上被消耗。

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