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Precise Re–Os ages of organic-rich mudrocks and the Os isotope composition of Jurassic seawater

机译:富含有机质的泥岩的精确Re-Os年龄和侏罗纪海水的Os同位素组成

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摘要

Rhenium and osmium isotope and abundance data have been obtained on precisely-located samples from three suites of immature, organic-rich mudrocks from Jurassic coastal outcrops in England, The data provide accurate whole-rode ages of 207 +/- 12 Ma, 181 +/- 13 Ma and 155 +/- 4.3 Ma for suites of Hettangian, Toarcian (exaratum Subzone) and Kimmeridgian (sensu anglico, wheatleyensis Subzone) samples. These new Re-Os ages are indistinguishable, within the assigned analytical uncertainties, from interpolated depositional ages estimated from published geological timescales, and establish the importance of the Re-Os dating technique for chronostratigraphic studies. Early-diagenetic pyrite nodules possess levels of Re and Os which are similar to 1-2 orders of magnitude lower than in the enclosing organic-rich mudrocks, indicating that these elements had already been removed from sediment pore waters at the time of nodule formation. Thus the Re-Os isotope system in these organic-rich mudrocks has been closed since, or from very soon after, the time of sediment deposition. Because most of the Re (98+%) and Os (95-99.8+%) in the mudrocks is shown to be hydrogenous, the Os-187/Os-188((i)) of the samples is interpreted to be that of contemporaneous seawater. The data thereby provide the first estimates of the Os isotope composition of Jurassic seawater. During the earliest Jurassic (Hettangian), the seawater Os-187/Os-188 ratio was extremely unradiogenic (similar to 0.15); it had increased to similar to 0.8 at the end of the Early Jurassic (Toarcian) similar to 20 Ma later, while in the Late Jurassic (Kimmeridgian) the seawater Os-187/Os-188 ratio was similar to 0.59. The most likely explanation for the unradiogenic Os isotope composition of Hettangian seawater is that the contribution of unradiogenic Os to the oceans from the hydrothermal alteration of oceanic crust greatly exceeded the input of radiogenic Os from the continents at that time. This interpretation is in Line with observations suggesting that global weathering rates were low in the Hettangian, and that increased hydrothermal and volcanic activity preceded the break-up of Pangea. The Re/Os ratios of Hettangian mudrocks (and by inference, of contemporaneous seawater) are similar to those of mudrocks deposited at later times during the Jurassic, and argues against the unradiogenic Os in Hettangian seawater being derived from extraterrestrial meteoritic sources.
机译:England和的同位素和丰度数据是从英格兰侏罗纪沿海露头的三套不成熟,富含有机物的泥岩中精确定位的样品中获得的,这些数据提供了207 +/- 12 Ma,181 +对于Hettangian,Toarcian(exaratum分区)和Kimmeridgian(sensu anglico,wheatleyensis分区)样本套件,则为-/-13 Ma和155 +/- 4.3 Ma。在分配的分析不确定性范围内,这些新的Re-Os年龄与根据已公布的地质时标估算的插值沉积年龄是无法区分的,并确定了Re-Os测年技术在年代地层研究中的重要性。早成岩性的黄铁矿结核中的Re和Os含量比包围的富含有机物的泥岩中的含量低1-2个数量级,表明这些元素在形成结核时已从沉积物孔隙水中去除。因此,自沉积沉积以来或之后不久,这些富含有机物的泥岩中的Re-Os同位素系统已经关闭。由于泥岩中大多数Re(98 +%)和Os(95-99.8 +%)被证明是含氢的,因此样品的Os-187 / Os-188((i))被解释为是同期海水。因此,数据提供了侏罗纪海水Os同位素组成的初步估计。在最早的侏罗纪时期(Hettangian),海水的Os-187 / Os-188比值极不辐射(类似于0.15)。在侏罗纪早期(Toarcian)末期,它增加到约0.8,类似于20 Ma之后;而在侏罗纪晚期(Kimmeridgian),海水中Os-187 / Os-188的比率接近0.59。 Hettangian海水中非放射性Os同位素组成的最可能解释是,海洋地壳热液变化对非放射性Os的贡献超过了当时大陆的放射性Os的输入。这种解释与以下观察结果一致,即黑腾塘的全球风化率较低,并且在Pangea破裂之前,热液和火山活动的增加。 Hettangian泥岩的Re / Os比率(并推断为同期海水)与侏罗纪后期沉积的泥岩的Re / Os比率相似,并反对Hettangian海水中的非放射性Os源自外星气象学来源。

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