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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >A single asteroidal source for extraterrestrial Ordovician chromite grains from Sweden and China: High-precision oxygen three-isotope SIMS analysis
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A single asteroidal source for extraterrestrial Ordovician chromite grains from Sweden and China: High-precision oxygen three-isotope SIMS analysis

机译:来自瑞典和中国的地外奥陶纪亚铬铁矿晶粒的单一小行星来源:高精度氧三同位素SIMS分析

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We examined oxygen three-isotope ratios of 48 extraterrestrial chromite (EC) grains extracted from mid-Ordovician sediments from two different locations in Sweden, and one location in south-central China. The ages of the sediments (470 Ma) coincide with the breakup event of the L chondrite parent asteroid. Elemental compositions of the chromite grains are generally consistent with their origin from L or LL chondrite parent bodies. The average D17O (&-deviation from the terrestrial mass-fractionation line, measured in situ from 15 lm spots by secondary ion mass spectrometry; SIMS) of EC grains extracted from fossil meteorites from Thorsberg and Brunflo are 1.17 ± 0.09& (2r) and 1.25 ± 0.16&, respectively, and those of fossil micrometeorites from Thorsberg and Puxi River are 1.10 ± 0.09&, and 1.11 ± 0.12&, respectively. Within uncertainty these values are all the same and consistent with the L chondrite group average D17O = 1.07 ± 0.18&, but also with the LL chondrite group average D17O = 1.26 ± 0.24& (Clayton et al., 1991). We conclude that the studied EC grains from correlated sediments from Sweden and China are related, and most likely originated in the same event, the L chondrite parent body breakup. We also analyzed chromites of modern H, L and LL chondrites and show that their D17O values coincide with averages of D17O of bulk analyses of H, L and LL chondrites. This study demonstrates that in situ oxygen isotope data measured by SIMS are accurate and precise if carefully standardized, and can be used to classify individual extraterrestrial chromite grains found in sediments.
机译:我们研究了从瑞典两个不同地点和中国中南部一个地点的奥陶纪中部沉积物中提取的48种地外亚铬酸盐(EC)颗粒的氧三同位素比率。沉积物的年龄(470 Ma)与L球粒陨石母小行星的破裂事件相吻合。亚铬铁矿晶粒的元素组成通常与其源自L或LL球粒陨石母体的来源一致。从Thorsberg和Brunflo的化石陨石中提取的EC晶粒的平均D17O(偏离地面质量分数线,从15 lm点现场测量; SIMS)为1.17±0.09&(2r), 1.25±0.16&分别来自托斯伯格和浦西河的微陨石分别为1.10±0.09&和1.11±0.12&。在不确定性范围内,这些值都相同,并且与L球粒陨石群的平均值D17O = 1.07±0.18&,但也与LL球粒陨石群的平均值D17O = 1.26±0.24&(Clayton et al。,1991)。我们得出的结论是,来自瑞典和中国相关沉积物的EC晶粒是相关的,并且很可能起源于L球粒陨石母体破裂的同一事件。我们还分析了现代H,L和LL球粒陨石的铬铁矿,并表明它们的D17O值与H,L和LL球粒陨石批量分析的D17O平均值一致。这项研究表明,如果仔细标准化,SIMS所测得的原位氧同位素数据是准确而精确的,并且可以用于对沉积物中发现的单个地外亚铬铁矿晶粒进行分类。

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