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Molybdenum isotope variations in molybdenite: Vapor transport and Rayleigh fractionation of Mo

机译:辉钼矿中的钼同位素变化:钼的蒸气输运和瑞利分馏

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摘要

Molybdenum isotopes in 20 molybdenite samples, dated by the Re-Os method and representing a range of geologic settings, show mass-dependent fractionation spanning 0.63%o per atomic mass unit (amu). Previous Mo isotope data for molybdenite reveal variations in fractionation of <0.5%o/amu. Interpretation of these data is hampered, however, by limited sample numbers in each study, lack of a common standard for inter laboratory comparison, and limited range of geologic settings. Here we show that Mo isotope compositions of molybdenites do not correlate with crystallization temperature, age, geographic distribution, or geologic conditions. Rather, Rayleigh distillation may explain variations of as much as 0.34%e/amu in a single molybdenite occurrence, exceeding the proposed variability in average continental crust. Vapor transport and rapid precipitation of Mo in propagating fractures may account for isotope fractionation of Mo (and perhaps other metals) at very small scales. If so, the average isotopic composition of Mo at each molybdenite occurrence may be representative of bulk crust. Our results suggest that the isotopic composition of Mo delivered to the oceans is uniform geographically and through geologic time.
机译:通过Re-Os方法测得的20个辉钼矿样品中的钼同位素代表了一系列地质背景,其质量分数依赖于每原子质量单位(amu)的0.63%o。辉钼矿的先前Mo同位素数据揭示了小于0.5%o / amu的分馏变化。但是,由于每项研究的样本数量有限,缺乏用于实验室间比较的通用标准以及地质环境范围有限,这些数据的解释受到了阻碍。在这里,我们表明钼矿的钼同位素组成与结晶温度,年龄,地理分布或地质条件不相关。相反,瑞利蒸馏可以解释一次辉钼矿中多达0.34%e / amu的变化,超出了平均大陆壳的建议变化性。扩展裂缝中的Mo的蒸气运移和快速沉淀可能解释了Mo(可能还有其他金属)在很小规模下的同位素分馏。如果这样的话,则在每次辉钼矿出现时Mo的平均同位素组成都可以代表大块地壳。我们的结果表明,输送到海洋的钼的同位素组成在地理上和整个地质时期都是一致的。

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