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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Oxygen isotope equilibrium between eclogite minerals and its constraints on mineral Sm-Nd chronometer
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Oxygen isotope equilibrium between eclogite minerals and its constraints on mineral Sm-Nd chronometer

机译:榴辉岩矿物之间的氧同位素平衡及其对矿物Sm-Nd天文钟的约束

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摘要

Sm-Nd and oxygen isotope analyses were carried out for mineral separates of ultrahigh pressure eclogites from the Sulu terrane in eastern China. The results show a direct correspondence in equilibrium or disequilibrium state between the oxygen and Sm-Nd isotope systems of eclogite minerals. The omphacite-garnet pairs of oxygen isotope equilibrium at eclogite-facies conditions yield meaningful Triassic Sm-Nd isochron ages, whereas those of oxygen isotope disequilibrium give non-Triassic ages of geological meaninglessness. This can be reasonably interpreted by the fact that the rates of oxygen diffusion in garnet and pyroxene are lower than, or close to, those of Nd diffusion, and thus attainment of isotopic equilibrium in the omphacite-garnet O system suggests achievement of Nd isotope equilibrium in the same mineral pairs. The presence or absence of fluid in the eclogite protoliths is a major rate-controlling factor for isotopic equilibration during high-grade metamorphism. It appears that the state of oxygen isotope equilibrium between cogenetic minerals can provide a critical test for the validity of the Sm-Nd mineral chronometer. In addition, the exact timing of the ultrahigh pressure metamorphism in the Dabie-Sulu terranes is constrained at Early Triassic rather than Late Triassic. Copyright (C) 2002. Elsevier Science Ltd. [References: 75]
机译:对中国东部苏禄地层的超高压榴辉岩的矿物分离物进行了m钕和氧同位素分析。结果表明,榴辉岩矿物的氧与Sm-Nd同位素体系在平衡或不平衡状态下具有直接对应关系。在榴辉岩相条件下,氧同位素平衡的辉绿岩-石榴石对产生有意义的三叠纪Sm-Nd等时年龄,而氧同位素不平衡的那些给出非地质时代的非三叠纪时代。石榴石和辉石中的氧扩散速率低于或接近Nd扩散速率的事实可以合理地解释这一点,因此,在绿辉石-石榴石O系统中达到同位素平衡表明Nd同位素平衡的实现在相同的矿物对中。榴辉岩原岩中流体的存在与否是高级变质过程中同位素平衡的主要速率控制因素。共生矿物之间的氧同位素平衡状态似乎可以为Sm-Nd矿物精密计时器的有效性提供关键测试。此外,大别-苏鲁地层中超高压变质作用的确切时间受早期三叠纪而不是晚期三叠纪的约束。版权所有(C)2002。ElsevierScience Ltd. [参考:75]

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