Anderson F Scott, Crow Carolyn, Levine Jonathan, Whitaker Tom J
Southwest Research Institute Boulder CO USA.
Department of Geological Sciences University of Colorado Boulder Boulder CO USA.
Earth Space Sci. 2020 Oct;7(10):e2020EA001177. doi: 10.1029/2020EA001177. Epub 2020 Oct 23.
We are developing an in situ, rock-dating spectrometer for spaceflight called the Chemistry, Organics, and Dating EXperiment (CODEX). CODEX will measure Rb-Sr compositions and determine ages of samples on the Moon or Mars and can be augmented to obtain Pb-Pb ages. Coupling Rb-Sr and Pb-Pb measurements broadens the suite of samples that can be dated and could provide tests of concordance. Here we assess whether geochronologically meaningful Pb-Pb data could be measured in situ by tuning the prototype CODEX to acquire Pb-Pb data from a suite of well-characterized specimens from the Earth, Moon, and Mars. For Keuhl Lake Zircon 91500 our Pb/Pb age of 1,090 ± 40 Ma is indistinguishable from the accepted age. In each of the Martian meteorites we studied, we could not resolve more than a single component of Pb and could not uniquely determine ages; nevertheless, our isotopic measurements were consistent with most previous analyses. On the other hand, we uniquely determined ages for three lunar meteorites. Our age for MIL 05035 is 3,550 ± 170 Ma, within 2σ of published ages for this specimen, in spite of it having <1 ppm Pb. LAP 02205 was contaminated by terrestrial Pb, but by filtering our data to exclude the most contaminated spots, we obtained an age of 3,010 ± 70 Ma, coincident with published values. Finally, our age for NWA 032 is nearly 1,000 Ma older than its age determined from other isotopic systems and is supported by additional Pb measurements made after chemical leaching.
我们正在研发一种用于太空飞行的原位岩石测年光谱仪,名为化学、有机物与测年实验仪(CODEX)。CODEX将测量铷-锶成分并确定月球或火星上样本的年龄,还可进行扩充以获取铅-铅年龄。结合铷-锶和铅-铅测量可拓宽可测年样本的范围,并能提供一致性检验。在此,我们通过调整CODEX原型以从一系列来自地球、月球和火星的特征明确的标本中获取铅-铅数据,来评估是否能原位测量具有地质年代学意义的铅-铅数据。对于库尔湖锆石91500,我们测得的铅-铅年龄为1090±40百万年,与公认年龄无法区分。在我们研究的每一块火星陨石中,我们无法分辨出超过一种的铅成分,也无法唯一确定年龄;然而,我们的同位素测量结果与大多数先前的分析一致。另一方面,我们唯一确定了三块月球陨石的年龄。我们测得的MIL 05035的年龄为3550±170百万年,在该标本已发表年龄的2σ范围内,尽管其铅含量<1 ppm。LAP 02205被地球铅污染,但通过过滤数据以排除污染最严重的点,我们获得了3010±70百万年的年龄,与已发表值相符。最后,我们测得NWA 032的年龄比通过其他同位素体系确定的年龄大近1000百万年,并且在化学浸出后进行的额外铅测量结果支持了这一结果。