首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The Al-26-Mg-26 systematics of FeO-rich chondrules from Acfer 094: Two chondrule generations distinct in age and oxygen isotope ratios
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The Al-26-Mg-26 systematics of FeO-rich chondrules from Acfer 094: Two chondrule generations distinct in age and oxygen isotope ratios

机译:Al-26-Mg-26来自Acfer 094的FoO-26富核细胞系统:两代在年龄和氧同位素比例下不同的脑子

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The Al-26-Mg-26 ages of FeO-rich (type II) chondrules from Acfer 094, one of the least thermally metamorphosed carbonaceous chondrites, were determined by SIMS analysis of plagioclase and olivine/pyroxene using a radio frequency (RF) plasma oxygen ion source. In combination with preexisting Al-26-Mg-26 ages of FeO-poor (type I) chondrules, the maximum range of formation ages recorded in chondrules from a single meteorite is determined to help provide constraints on models of material transport in the proto-planetary disk. We also report new SIMS oxygen three-isotope analyses of type II chondrules in Acfer 094. All but one of the plagioclase analyses show resolvable excesses in Mg-26 and isochron regressions yield initial Al-26/Al-27 ratios of type II chondrules that range from (3.62 +/- 0.86) x 10(-6) to (9.3 +/- 1.1) x 10(-)(6) which translates to formation ages between 2.71 (-0.)(221)/(+0.28) Ma and 1.75 (-0.11)/(+0.12) Ma after CAI. This overall range is indistinguishable from that determined for type I chondrules in Acfer 094. The initial Al-26/Al-27 ratio of the oldest type II chondrule is resolved from that of all other type II chondrules in Acfer 094. Importantly, the oldest type I chondrule and the oldest type II chondrule in Acfer 094 possess within analytical error indistinguishable initial Al-26/Al-27 ratios and Delta O-17 values of similar to 0 parts per thousand. Ages and oxygen isotope ratios clearly set these two chondrules apart from all other chondrules in Acfer 094. It is therefore conceivable that the formation region of these two chondrules differs from that of other chondrules and in turn suggests that Acfer 094 contains two distinct chondrule generations. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过使用射频(RF)等离子体(RF)等离子体,通过SIMS分析测定来自Acfer 094的Al-26-Mg-26年龄,来自Acfer 094的Feo-094,是最小热变形的碳质软骨,其中蛋白酶和橄榄石/氨基的SIMS分析测定氧离子源。结合预先存在的Al-26-Mg-26年龄的Feo-Pors(I型)骨髓,确定来自单个陨石的软骨内记录的形成年龄的最大形成年龄,以帮助对原样上的材料运输模型提供限制行星盘。我们还在Acfer 094中报告了II型软骨蛋白的新型SIMS氧三位同位素分析。除了MG-26和等色素回归中的所有蛋白酶分析中的所有普拉基酶分析都显示出II型软骨的初始Al-26 / Al-27比率。范围从(3.62 +/- 0.86)x 10(-6)至(9.3 +/- 1.1)x 10( - )(6),它转化为2.71(-0.)(221)/(+ 0.28的形成CAI后,MA和1.75(-0.11)/(+ 0.12)mA。该整体范围与Acfer 094中I型Chondrules确定的那个整体范围是难以区分的。最古老的II型软骨抑制的初始Al-26 / Al-27比率是从Acfer 094中的所有其他II类骨髓内组成的。重要的是,最古老的I型Chondrule和Acfer 094中最古老的II型Chondrule在分析误差内具有难以区分的初始al-26 / al-27比率,并且ΔO-17值类似于0‰。随着Acfer 094中的所有其他骨髓体,年龄和氧同位素比例清楚地将这两个软骨压力片分开。因此,可以想到这两种软骨质的形成区域与其他软骨体的形成区域不同,并且反过来表明Acfer 094含有两个不同的软骨组。 (c)2019年elestvier有限公司保留所有权利。

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