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首页> 外文期刊>Quaternary International >Combined IRSL and post-IR OSL dating of Romanian loess using single aliquots of polymineral fine grains
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Combined IRSL and post-IR OSL dating of Romanian loess using single aliquots of polymineral fine grains

机译:罗马尼亚黄土的IRSL和IR-OSL后合并测年,使用等分的多矿物细颗粒

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摘要

The paper reports on continuing luminescence investigations of Romanian loess using samples collected from the loess-palaeosol sequence near Mircea Voda (SE Romania). Previous optically stimulated luminescence (OSL) studies using different grain-sizes of quartz (4-11 μm and 63-90 μm) yielded discrepant chronologies for the last interglacial—glacial cycle. In this study, a double-SAR protocol is used to determine the age of polymineral fine (4—11 μm) grains through their infrared stimulated luminescence (IRSL) and post-IR optically stimulated luminescence (post-IR OSL) emissions in the UV. Laboratory tests confirm the suitability of the protocol for both signals. Fading measurements indicate a significant feldspathic contribution to the post-IR OSL signal. In general, the fading-corrected IRSL and post-IR OSL age results are mutually consistent, and they agree with previously reported OSL ages for fine-grained (4-11 μm) quartz. This agreement enhances the reliability of the ages obtained using luminescence signals from fine-grains, and allows more confident correlation of the weakly-developed palaeosol in the uppermost loess unit (L1) with marine isotope stage 3 (MIS3). The fading-corrected ages underestimate the depositional age of older material (units L2—L4), probably owing to limitations of the correction model.
机译:该论文报道了使用从Mircea Voda(SE罗马尼亚)附近的黄土-古土壤序列中收集的样品对罗马尼亚黄土进行持续发光研究的报道。先前使用不同粒度的石英(4-11μm和63-90μm)进行的光激发发光(OSL)研究得出了最后一个冰期-冰期的时间差异。在这项研究中,使用双SAR协议通过紫外线中的红外激发发光(IRSL)和红外后光学激发发光(IR OSL)发射来确定多矿物细颗粒(4-11μm)的年龄。实验室测试证实了该协议对两种信号的适用性。衰落的测量结果表明对IR后OSL信号有明显的长石感作用。通常,经过衰落校正的IRSL和IR后OSL年龄结果是相互一致的,并且它们与先前报道的细粒(4-11μm)石英的OSL年龄一致。该协议提高了使用细粒发光信号获得的年龄的可靠性,并使最上层黄土单元(L1)中发育较弱的古土壤与海洋同位素阶段3(MIS3)更加可信。经过衰落校正的年龄可能低估了较旧材料(单元L2-L4)的沉积年龄,这可能是由于校正模型的局限性所致。

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  • 来源
    《Quaternary International》 |2013年第19期|15-21|共7页
  • 作者单位

    Laboratory of Mineralogy and Petrology (Luminescence Research Group), Department of Geology and Soil Science, Ghent University, Krijgslaan 281 (S8), B-9000 Ghent, Belgium, Faculty of Environmental Science, Babes-Bolyai University, Fantdnele 30, 400294 Cluj Napoca, Romania;

    Laboratory of Mineralogy and Petrology (Luminescence Research Group), Department of Geology and Soil Science, Ghent University, Krijgslaan 281 (S8), B-9000 Ghent, Belgium;

    Faculty of Environmental Science, Babes-Bolyai University, Fantdnele 30, 400294 Cluj Napoca, Romania;

    Faculty of Environmental Science, Babes-Bolyai University, Fantdnele 30, 400294 Cluj Napoca, Romania;

    Laboratory of Mineralogy and Petrology (Luminescence Research Group), Department of Geology and Soil Science, Ghent University, Krijgslaan 281 (S8), B-9000 Ghent, Belgium;

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