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首页> 外文期刊>Meteoritics & planetary science >Primordial noble gases in a graphite-metal inclusion from the Canyon Diablo IAB iron meteorite and their implications
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Primordial noble gases in a graphite-metal inclusion from the Canyon Diablo IAB iron meteorite and their implications

机译:Canyon Diablo IAB铁陨石中石墨-金属夹杂物中的原始稀有气体及其影响

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We have carried out noble gas measurements on graphite from a large graphite-metal inclusion in Canyon Diablo. The Ne data of the low-temperature fractions lie on the mixing line between air and the spallogenic component, but those of high temperatures seem to lie on the mixing line between Ne-HL and the spallogenic component. The Ar isotope data indicate the presence of Q in addition to air, spallogenic component and Ar-HL. As the elemental concentration of Ne in Q is low, we could not detect the Ne-Q from the Ne data. On the other hand, we could not observe Xe-HL in our Xe data. As the Xe concentration and the Xe/Ne ratio in Q is much higher than that in the HL component, it is likely that only the contribution of Q is observed in the Xe data. Xenon isotopic data can be explained as a mixture of Q, air, and "El Taco Xe." The Canyon Diablo graphite contains both HL and Q, very much like carbonaceous chondrites, retaining the signatures of various primordial noble gas components. This indicates that the graphite was formed in a primitive nebular environment and was not heated to high, igneous temperatures. Furthermore, a large excess of Xe-129 was observed, which indicates that the graphite was formed at a very early stage of the solar system when I-129 was still present. The HL/Q ratios in the graphite in Canyon Diablo are lower than those in carbonaceous chondrites, indicating that some thermal metamorphism occurred on the former. We estimated the temperature of the thermal metamorphism to about 500-600 degrees C from the difference of thermal retentivities of HL and Q. It is also noted that "El Taco Xe" is commonly observed in many IAB iron meteorites, but its presence in carbonaceous chondrites has not yet been established.
机译:我们已经对Canyon Diablo中大型石墨-金属夹杂物中的石墨进行了惰性气体测量。低温馏分的Ne数据位于空气与散裂成分之间的混合线上,而高温馏分的Ne数据似乎位于Ne-HL与散裂成分之间的混合线上。 Ar同位素数据表明除了空气,散裂成分和Ar-HL外还存在Q。由于Q中Ne的元素浓度较低,因此无法从Ne数据中检测到Ne-Q。另一方面,我们无法在Xe数据中观察到Xe-HL。由于Q中的Xe浓度和Xe / Ne比远高于HL成分,因此在Xe数据中可能只观察到Q的贡献。氙同位素数据可以解释为Q,空气和“ El Taco Xe”的混合物。 Canyon暗黑破坏神石墨同时含有HL和Q,非常类似于碳质球粒陨石,保留了各种原始稀有气体成分的特征。这表明石墨是在原始的星云状环境中形成的,没有被加热到高火成的温度。此外,观察到大量过量的Xe-129,这表明当I-129仍然存在时,石墨是在太阳系的非常早期形成的。峡谷暗黑破坏神中石墨的HL / Q比低于碳质球粒陨石的HL / Q比,表明前者发生了一些热变质作用。我们从HL和Q的热保持力差异估计了热变质的温度大约为500-600摄氏度。还应注意,在许多IAB铁陨石中通常观察到“ El Taco Xe”,但它存在于碳质中球粒陨石尚未建立。

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