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首页> 外文期刊>Analytica chimica acta >A new method based on low background instrumental neutron activation analysis for major, trace and ultra-trace element determination in atmospheric mineral dust from polar ice cores
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A new method based on low background instrumental neutron activation analysis for major, trace and ultra-trace element determination in atmospheric mineral dust from polar ice cores

机译:基于低背景仪器中子活化分析的极性冰芯大气矿物粉尘中主要,痕量和超痕量元素测定的新方法

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摘要

Dust found in polar ice core samples present extremely low concentrations, in addition the availability of such samples is usually strictly limited. For these reasons the chemical and physical analysis of polar ice cores is an analytical challenge. In this work a new method based on low background instrumental neutron activation analysis (LB-INAA) for the multi-elemental characterization of the insoluble fraction of dust from polar ice cores is presented. Thanks to an accurate selection of the most proper materials and procedures it was possible to reach unprecedented analytical performances, suitable for ice core analyses. The method was applied to Antarctic ice core samples. Five samples of atmospheric dust (mu g size) from ice sections of the Antarctic Talos Dome ice core were prepared and analyzed. A set of 37 elements was quantified, spanning from all the major elements (Na, Mg, Al, Si, K, Ca, Ti, Mn and Fe) to trace ones, including 10 (La, Ce, Nd, Sm, Eu, Tb, Ho, Tm, Yb and Lu) of the 14 natural occurring lanthanides. The detection limits are in the range of 10(-13) - 10(-6) g, improving previous results of 1-3 orders of magnitude depending on the element; uncertainties lies between 4% and 60%. (C) 2016 Elsevier B.V. All rights reserved.
机译:极地冰芯样品中发现的粉尘浓度极低,此外,此类样品的可用性通常受到严格限制。由于这些原因,极性冰芯的化学和物理分析是一项分析挑战。在这项工作中,提出了一种基于低本底仪器中子活化分析(LB-INAA)的新方法,该方法可对极性冰芯中粉尘的不溶部分进行多元素表征。由于正确选择了最合适的材料和程序,因此可以达到空前的分析性能,适用于冰芯分析。该方法适用于南极冰芯样品。准备并分析了南极Talos圆顶冰芯冰段的五个大气尘埃(μg大小)样品。定量了37种元素,从所有主要元素(Na,Mg,Al,Si,K,Ca,Ti,Mn和Fe)到痕量元素,包括10种(La,Ce,Nd,Sm,Eu, 14种天然镧系元素中的Tb,Ho,Tm,Yb和Lu)。检出限在10(-13)-10(-6)g范围内,取决于元素,以前的结果提高了1-3个数量级;不确定性介于4%和60%之间。 (C)2016 Elsevier B.V.保留所有权利。

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