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Early aqueous activity on the ordinary and carbonaceous chondrite parent bodies recorded by fayalite

机译:铁橄榄石记录的普通和碳质球粒陨石母体的早期水活度

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Chronology of aqueous activity on chondrite parent bodies constrains their accretion times and thermal histories. Radiometric 53Mn–53Cr dating has been successfully applied to aqueously formed carbonates in CM carbonaceous chondrites. Owing to the absence of carbonates in ordinary (H, L and LL), and CV and CO carbonaceous chondrites, and the lack of proper standards, there are no reliable ages of aqueous activity on their parent bodies. Here we report the first 53Mn–53Cr ages of aqueously formed fayalite in the L3 chondrite Elephant Moraine 90161 as Myr after calcium–aluminium-rich inclusions (CAIs), the oldest Solar System solids. In addition, measurements using our synthesized fayalite standard show that fayalite in the CV3 chondrite Asuka 881317 and CO3-like chondrite MacAlpine Hills 88107 formed and Myr after CAIs, respectively. Thermal modelling, combined with the inferred conditions (temperature and water/rock ratio) and 53Mn–53Cr ages of aqueous alteration, suggests accretion of the L, CV and CO parent bodies ~1.8?2.5?Myr after CAIs.
机译:球粒陨石母体上水活动的时间顺序限制了它们的积聚时间和热史。放射性 53 Mn– 53 Cr测年法已成功应用于CM碳质球粒陨石中的水成碳酸盐。由于普通(H,L和LL)中不含碳酸盐,以及CV和CO碳质球粒陨石,以及缺乏适当的标准,因此在其母体上没有可靠的含水活性年龄。在这里,我们报告了在富含钙铝夹杂物(CAI),太阳系中最古老的固体。此外,使用我们合成的铁橄榄石标准物进行的测量表明,CV3球粒陨石明日香881317和类似CO3的球粒陨石MacAlpine Hills 88107中形成了铁橄榄石,CAI后形成了Myr。热模型,结合推断条件(温度和水/岩石比率)和含水变化的 53 Mn– 53 Cr年龄,表明L,CV和CO的增加CAIs后,母体〜1.8?2.5?Myr。

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