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Luminescence dating of glaciofluvial deposits linked to the penultimate glaciation in the Eastern Alps

机译:与东阿尔卑斯山倒数第二个冰川作用有关的冰川河流沉积物的发光年代测定

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摘要

During the penultimate glaciation vast areas of the Alps were glaciated, with piedmont glaciers protruding into the foreland. In the easternmost part of the northward draining valleys of the Alps, the glaciers did not reach the foreland, but formed valley glaciers confined by the mountainous terrain. This also applies to the Ybbs valley, where samples for luminescence dating out of glaciofluvial gravel accumulations were taken at three locations along the present day river course. In a highly dynamic depositional environment, such as a glacier-fed river system, incomplete resetting of the luminescence signal is possible, in particular when transport distances are short. In such cases, quartz usually is the preferred mineral over feldspar, especially if dose rates are low and may theoretically allow obtaining quartz ages beyond 150 ka. Because previous research has shown, and as corroborated within this study, quartz from the research area exhibits analytical problems in the high age range. Therefore luminescence properties of coarse grain (100–200 μm) quartz and in addition K-rich feldspar were investigated with the aim to reconstruct the chronology of the glacial processes within the Ybbs catchment area. Issues of incomplete bleaching were pIRIR225 encountered and addressed by comparing quartz OSL, fading corrected K feldspar IR50 and pIRIR225 to identify reliable ages. Depositional ages based on quartz OSL and feldspar pIRIR225 signals revealed deposition of ice marginal kame terraces and glaciofluvial foreland terraces during late to middle MIS 6. In combination with results from previous studies, we could reconstruct the valley evolution during the Riss glaciation. Newly gained luminescence ages of the deglaciation in the easternmost Alps coincide with OSL dated deglaciation events in the Western Alps, indicating that climatic change along the north side of the Alps happened simultaneously.
机译:在倒数第二次冰川形成期间,阿尔卑斯山的大部分地区都发生了冰川化,山麓冰川突入前陆。在阿尔卑斯山北向流域的最东部,冰川没有到达前陆,而是形成了由山区限制的山谷冰川。这也适用于Ybbs谷,在沿今天河道的三个位置采集了来自冰川河流砾石堆积的发光样品。在高度动态的沉积环境中,例如在冰川供水的河流系统中,发光信号可能无法完全复位,特别是在运输距离较短的情况下。在这种情况下,石英通常是长石的首选矿物,尤其是在剂量率较低的情况下,从理论上讲,石英的年龄可以超过150ka。因为先前的研究已经显示,并且在该研究中得到证实,所以来自研究领域的石英在高年龄范围内显示出分析问题。因此,研究了粗粒石英(100–200μm)以及富含钾的长石的发光特性,旨在重建Ybbs流域内冰川过程的时间顺序。通过比较石英OSL,褪色校正的K长石IR50和pIRIR225以确定可靠的年龄,遇到了pIRIR225并解决了不完全漂白的问题。基于石英OSL和长石pIRIR225信号的沉积年龄揭示了MIS 6后期至中期的冰质边缘kame阶地和冰川河流前陆阶地的沉积。结合以前的研究结果,我们可以重建Riss冰川化期间的山谷演化。在最北端的阿尔卑斯山,新近获得的冰消发光年龄与西部阿尔卑斯山上OSL测年的冰消事件相吻合,这表明沿阿尔卑斯山北侧的气候变化是同时发生的。

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