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Age ranges of the Tibetan ice cores with emphasis on the Chongce ice cores, western Kunlun Mountains

机译:昆仑山西部藏族冰芯的年龄范围,重点是崇采冰芯

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An accurate chronology is the essential first step for a sound understanding of ice core records. However, dating ice cores drilled from the high-elevation glaciers is challenging and often problematic, leading to great uncertainties. The Guliya ice core, drilled to the bedrock (308.6 m in length) along the western Kunlun Mountains on the north-western Tibetan Plateau (TP) and widely used as a benchmark for palaeoclimate research, is believed to reach 500 ka (thousand years) at its bottom. Meanwhile other Tibetan ice cores (i.e. Dasuopu and East Rongbuk in the Himalayas, Puruogangri in the central TP and Dunde in the north-eastern TP) are mostly of Holocene origin. In this study, we drilled four ice cores into bedrock (216.6, 208.6, 135.8 and 133.8 m in length, respectively) from the Chongce ice cap ~30 km to the Guliya ice core drilling site. We took measurements of sup14/supC , sup210/supPb , tritium and β activity for the ice cores, and used these values in a two-parameter flow model to establish the ice core depth–age relationship. We suggested that the Chongce ice cores might be of Holocene origin, consistent with the other Tibetan ice cores except Guliya. The remarkable discrepancy between the Guliya and all the other Tibetan ice core chronology implies that more effort is necessary to explore multiple dating techniques to confirm the age ranges of the TP glaciers, including those from Chongce and Guliya.
机译:正确的时间顺序是正确理解冰芯记录的基本第一步。然而,从高海拔冰川钻出的冰芯年代测定具有挑战性,并且常常是有问题的,从而导致很大的不确定性。 Guliya冰芯沿青藏高原(TP)西北昆仑山钻至基岩(长308.6 m),被广泛用作古气候研究的基准,据信可达到> 500 ka(一千年) )的底部。同时,其他藏族冰芯(即喜马拉雅山的达索普和东荣布克,TP中部的Puruogangri和TP东北部的邓德)大多来自全新世。在这项研究中,我们从Chongce冰盖〜30 km到Guliya冰芯钻探部位,在基岩中钻了四个冰芯(分别长216.6、208.6、135.8和133.8 m)。我们测量了冰芯的 14 C, 210 Pb,tri和β活性,并在两参数流模型中使用这些值建立了冰芯深度年龄关系。我们建议,崇采冰芯可能是全新世起源的,与古利亚以外的其他藏族冰芯一致。古里耶与所有其他藏族冰芯年代之间的显着差异意味着,需要更多的努力来探索多种测年技术,以确认TP冰川的年龄范围,包括Chongce和古里雅的冰川。

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