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首页> 外文期刊>Journal of sedimentary research >CHRONOSTRATIGRAPHIC CORRELATION OF LACUSTRINE DEPOSITS USING (SR)-S-87/(SR)-S-86 RATIOS, EOCENE GREEN RIVER FORMATION, WYOMING, USA
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CHRONOSTRATIGRAPHIC CORRELATION OF LACUSTRINE DEPOSITS USING (SR)-S-87/(SR)-S-86 RATIOS, EOCENE GREEN RIVER FORMATION, WYOMING, USA

机译:使用(SR)-87 /(SR)-86比率,何绿河形成,Wyoming,USA

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摘要

The reconstruction of detailed, basin-scale depositional histories from sedimentary rocks fundamentally depends on the availability of reliable time markers. Unlike marine strata, lacustrine strata typically lack rapidly evolving, cosmopolitan fauna or flora that might serve this purpose. Depending on their geologic context, lacustrine strata may also lack tephras that could provide isochronous markers or radioisotopic age. Variations in Sr-87/Sr-86 ratios could potentially provide an alternative means of chronostratigraphic correlation for carbonate-rich lake deposits, based on the hypothesis that Sr isotopes are well mixed in a lake and do not experience significant fractionation. To test this hypothesis we measured Sr-87/Sr-86 ratios in 114 samples from two drill cores of the upper Wilkins Peak Member from the Green River Formation that are located similar to 23 km apart. These cores can be independently correlated using distinctive tephras and organic-carbon rich mudstone horizons. Measured Sr-87/Sr-86 ratios range from 0.71154 to 0.71504, and vary inversely with lake-water depth, as interpreted by sedimentary lithofacies characteristics. Lower ratios of Sr-87/Sr-86 are found in lithofacies deposited during lake highstands, which are marked by laminated dark-gray mudstone and elevated organic-carbon enrichment (as measured by Fischer Assay analysis). Higher Sr-87/Sr-86 ratios occur in lithofacies deposited during lake lowstands, which are marked by organic-lean gray-green mudstone(. 87)Sr/Sr-86 in approximately time-equivalent samples from the two cores show a strong positive correlation (r = 0.68), despite the likely presence of small temporal mismatches between approximately correlative samples. We conclude that lake-water was consistently well mixed with respect to Sr across distances of at least 23 km. These results suggest that Sr-87/Sr-86 can serve as a powerful tool to aid high-resolution chronostratigraphic correlation of lake deposits.
机译:从沉积岩石的细节重建,从根本上根本取决于可靠时间标记的可用性。与海洋地层不同,湖泊地层通常缺乏迅速发展,国际大都会群或植物群,可能为此目的服务。根据他们的地质背景,湖泊地层也可能缺乏Tephras,可以提供同步标记或放射性同位素。 SR-87 / SR-86比率的变化可能是碳酸盐湖泊沉积物的替代方法,基于SR同位素在湖泊中混合并且不经历显着的分馏。为了测试这个假设,我们测量了来自上威尔克斯峰峰构件的两个钻孔的SR-87 / SR-86比率,该比率来自于与23公里相同的绿色河流形成。这些核心可以使用独特的Tepharras和有机碳富含泥岩地平线独立相关。测量的SR-87 / SR-86比率范围为0.71154至0.71504,并与湖泊水深相差,由沉积锂缺失特性解释。 SR-87 / SR-86的较低比率在湖泊高价沉积的Lithofacies中发现,其标有层压的深灰岩泥岩和升高的有机碳富集(通过Fischer测定分析测量)。较高的SR-87 / SR-86比率发生在湖泊普通湖泊沉积的岩石涂层中,这些比率由有机贫灰绿色泥岩(87)SR / SR-86标记为两座核心的大约时间相同的样本显示出强烈的尽管在大致相关性样本之间可能存在小时间不匹配,但呈正相关(R = 0.68)。我们得出结论,湖水与至少23公里的距离相对于Sr持续良好混合。这些结果表明,SR-87 / SR-86可以作为帮助湖泊沉积物的高分辨率计时相关性的强大工具。

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