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首页> 外文期刊>Geomorphology >Revisiting a type locality for Late Glacial aeolian sand deposition in NW Europe: Optical dating of the dune complex at Opgrimbie (NE Belgium)
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Revisiting a type locality for Late Glacial aeolian sand deposition in NW Europe: Optical dating of the dune complex at Opgrimbie (NE Belgium)

机译:再次探讨欧洲西北部晚冰期风沙沉积的类型地区:Opgrimbie(比利时东北)沙丘群的光学定年

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摘要

The Late Glacial dune complex at Opgrimbie (NE Belgium) is thought to represent a complete record of the Late Pleniglacial to Holocene change at the southernmost part of the coversand area. In this work, the chronology of the site was reinvestigated using quartz-based single-aliquot optical dating. Nine samples in total were collected from sediments above and below a bleached horizon, the Opgrimbie layer, which laterally passes into a sandy peat layer; earlier radiometric radiocarbon dating and pollen analyses showed the latter to be of Boiling age (14.8-14.1 ka cal. BP). The sampled sequence is overlain by a second horizon, the Usselo horizon, for which an Allerad age (14.0-13.0 ka cal. BP) was deduced from one radiometric ~(14)C age and palynological evidence. This was confirmed by AMS data obtained as part of this study.rnAll nine quartz samples showed satisfactory luminescence characteristics, and yielded an internally consistent set of optical ages. The dataset contains no clear outliers and the observed variation is not much larger than that expected from uncertainties. The sediments over- and underlying the lowermost bleached horizon are dated at 12.9 ± 0.9 ka (n = 6) and 13.0 ± 0.8 ka (n = 3), respectively. These ages do not confirm the Bolling age that was previously established for this horizon; the optical ages are, however, consistent with the chronostratigraphical position of the sediments below the Usselo soil of Allerad age. As such, the OSL ages question if the Lateglacial aeolian succession is fully developed at Opgrimbie, and they challenge its significance as a type locality.
机译:人们认为,位于Opgrimbie(比利时东北部)的晚冰河沙丘复合体代表了覆盖区最南端的晚冰世至全新世变化的完整记录。在这项工作中,使用基于石英的单等分光学测年法对地点的年代进行了重新调查。从漂白地平线上方和下方的沉积物Opgrimbie层总共收集了9个样品,该沉积物横向进入沙质泥炭层。早期的放射性碳测年和花粉分析表明,后者处于沸腾时代(14.8-14.1 ka cal。BP)。采样序列被第二层视线覆盖,即Usselo视线,从一个辐射性〜(14)C年龄和孢粉学证据推导出了Allerad年龄(14.0-13.0 ka cal。BP)。这项研究的一部分获得的AMS数据证实了这一点。所有9个石英样品均显示出令人满意的发光特性,并产生了内部一致的光学年龄。数据集没有明显的异常值,并且观察到的变化并不比不确定性所预期的大很多。最低漂白层上方和下方的沉积物的日期分别为12.9±0.9 ka(n = 6)和13.0±0.8 ka(n = 3)。这些年龄并不能确定之前为该范围确定的Bolling年龄;然而,光学年龄与阿勒拉德年龄的乌塞洛土壤以下的沉积物的年代地层位置一致。因此,OSL年龄质疑Opgrimbie的晚冰期风成序是否充分发育,并挑战了其作为典型地区的重要性。

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  • 来源
    《Geomorphology》 |2009年第2期|27-35|共9页
  • 作者单位

    Laboratory of Mineralogy and Petrology (Luminescence Research Group), Geological Institute (S8), Ghent University, Krijgslaan 281, B-9000 Gent, Belgium;

    Laboratory of Mineralogy and Petrology (Luminescence Research Group), Geological Institute (S8), Ghent University, Krijgslaan 281, B-9000 Gent, Belgium;

    Physical and Regional Geography Research Group, Katholieke Universiteit Leuven, Celestijnenlaan 200E, 8-3001 Heverlee, Belgium;

    Laboratory of Mineralogy and Petrology (Luminescence Research Group), Geological Institute (S8), Ghent University, Krijgslaan 281, B-9000 Gent, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dune sand stratigraphy; late glacial; optically stimulated luminescence; quartz;

    机译:沙丘地层晚冰川光学激发的发光;石英;

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