The potential for a continuous 10Be record measured on ice chips from a borehole

Long Nguyen , Chiara I. Paleari , Stefanie Müller , Marcus Christl , Florian Mekhaldi , Philip Gautschi , Robert Mulvaney , Julius Rix , Raimund Muscheler
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引用次数: 7

Abstract

Ice cores are excellent archives for obtaining long and continuous 10Be records. However, traditional ice core 10Be measurements required a lot of ice (0.5–1kg) and often needed to be connected to a large and costly ice core project. These reasons have been the factors limiting the number and variety of 10Be projects and data. In this paper, we show measurements of 10Be on small samples (∼45g) of continuous auger ice chips from a borehole at Little Dome C (LDC), East Antarctica. The sample preparation method for 10Be accelerator mass spectrometry (AMS) was tested and optimized using test samples (∼50g) including well-mixed surface ice chips from the LDC site, snow collected in Lund (Sweden) and frozen Milli-Q water. The results show that our small ice samples should be processed without ion exchange filtration of the melt water and cleaning the subsequent Be(OH)2 precipitate. In addition, co-precipitating Be with Fe led to more reproducible measurement currents and offer the potential for higher efficiency and precision via longer measurement time. We applied the established preparation method to measure 10Be on 76 samples of the auger ice chips. The resulting 10Be concentration record for the period from 1354 to 1950 CE agrees well with the 10Be concentration in a South Pole ice core and the global 14C production rate and thus reflects well the atmospheric production signal of 10Be. We also observed insignificant mixing among the ice chip samples during the process of drilling and retrieving the ice. Therefore, the new ice chip samples are promising for assessing the long-term changes in 10Be deposition at different ice core sites. A wide application of this novel ice chip samples will increase the variety of 10Be records which will help to improve the assessment of long-term solar and geomagnetic shielding of galactic cosmic rays.

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在钻孔的冰片上测量连续10Be记录的可能性
冰芯是获得长而连续的10Be记录的极好的档案。然而,传统的冰芯10Be测量需要大量的冰(0.5-1kg),并且通常需要与大型且昂贵的冰芯项目相连接。这些原因一直是限制10Be项目和数据数量和种类的因素。在本文中,我们展示了来自东南极洲Little Dome C (LDC)钻孔的连续螺旋冰片的小样本(~ 45g)上10Be的测量结果。对10Be加速器质谱(AMS)的样品制备方法进行了测试和优化,测试样品(~ 50g)包括LDC站点的混合良好的表面冰片、瑞典隆德收集的雪和冷冻的milliq水。结果表明,我们的小冰样不需要对熔体水进行离子交换过滤和清洗后续的be (OH)2沉淀。此外,Be与Fe的共沉淀产生了更可重复的测量电流,并通过更长的测量时间提供了更高效率和精度的潜力。应用所建立的制备方法对76个螺旋冰屑样品进行了10Be测量。由此得到的1354 - 1950 CE期间的10Be浓度记录与南极冰芯中的10Be浓度和全球14C生成速率吻合较好,从而很好地反映了大气中10Be的生成信号。我们还观察到,在钻孔和回收冰的过程中,冰屑样品之间的混合不明显。因此,新的冰片样品有望用于评估不同冰芯地点10Be沉积的长期变化。这种新型冰片样品的广泛应用将增加10Be记录的多样性,这将有助于改进对银河系宇宙射线的长期太阳和地磁屏蔽的评估。
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