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~(16)O enrichments in aluminum-rich chondrules from ordinary chondrites

机译:从普通球粒陨石中富铝球粒中〜(16)O富集

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摘要

The oxygen isotopic compositions of seven Al-rich chondrules from four unequilibrated ordinary chondrites were measured in situ using an ion microprobe. On an oxygen three isotope plot, the data are continuous with the ordinary chondrite ferromagnesian chondrule field but extend it to more ~(16)O-enriched values along a mixing line of slope = 0.83 ± 0.09, with the lightest value recorded at δ~(18)O = -15.7 ± 1.8‰ and δ~(17)O = -13.5 ± 2.6‰. If Al-rich chondrules were mixtures of ferromagnesian chondrules and CAI material, their bulk chemical compositions would require them to exhibit larger ~(16)O enrichments than we observe. Therefore, Al-rich chondrules are not simple mixtures of these two components. Three chondrules exhibit significant internal isotopic heterogeneity indicative of partial exchange with a gaseous reservoir. Porphyritic Al-rich chondrules are consistently ~(16)O-rich relative to nonporphyritic ones, suggesting that degree of melting is a key factor and pointing to a nebular setting for the isotopic exchange process. Because Al-rich chondrules are closely related to ferromagnesian chondrules, their radiogenic Mg isotopic abundances can plausibly be applied to help constrain the timing or location of chondrule formation.
机译:使用离子微探针原位测量了来自四个未平衡普通球粒晶体的七个富铝球粒的氧同位素组成。在一个氧三同位素图上,数据与普通球粒陨铁锰矿球粒场是连续的,但沿斜率= 0.83±0.09的混合线将其扩展到更多〜(16)O富集的值,最轻的值记录在δ〜 (18)O = -15.7±1.8‰,δ〜(17)O = -13.5±2.6‰。如果富含铝的球藻是铁锰球藻和CAI材料的混合物,则它们的大分子化学成分将要求它们表现出比我们观察到的更大的〜(16)O富集。因此,富铝的软骨不是这两种成分的简单混合物。三个软骨显示出显着的内部同位素异质性,表明与气藏的部分交换。相对于非卟啉质,富铝质的长软骨始终具有〜(16)O富集,这表明熔融程度是关键因素,并指出了同位素交换过程的星云状环境。由于富含铝的软骨与铁镁铝镁铝镁铝镁铝合金密切相关,因此可以合理地应用其放射性镁同位素丰度来帮助限制软骨形成的时间或位置。

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