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Reliable Ultra Trace Analysis of Cd U and Zn Concentrations in Greenland Snow and Ice by Using Ultraclean Methods for Contamination Control

机译:使用超净方法进行污染控制对格陵兰岛冰雪中的CdU和Zn浓度进行可靠的超痕量分析

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摘要

This study presents ultraclean procedures used in the challenging task of determining trace elements at or below the pg/g concentration level encountered in Greenland snow and ice. In order to validate these ultraclean procedures, recent snowfall and Holocene ice from northwest Greenland were analyzed for Cd, U, and Zn concentrations. The total procedural blanks brought through the entire measurement procedure proved to be negligible, compared to trace element concentrations, measured in snow and ice samples. This validates the overall practicality of the proposed ultraclean procedures, thereby ensuring the reliable measurements of ultra-trace analysis. A comparison between our study and published data shows that improper procedures employed throughout all stages, from field sampling to analysis to elevate the concentrations by several orders of magnitude, relative to the reliable concentration ranges. The risk of contamination exposure for selected trace elements appears to increase in the order of U < As ≤ Pb < Cd < Zn. Reliable measurements of Cd, U, and Zn concentrations in snow and ice allowed us to interpret the data in terms of seasonal variations in the inputs of crustal and anthropogenic sources to Greenland ice sheet.
机译:这项研究提出了用于确定在格陵兰冰雪中遇到的pg / g浓度以下的微量元素的艰巨任务中使用的超净程序。为了验证这些超净程序,分析了格陵兰西北部最近的降雪和全新世冰中的Cd,U和Zn浓度。与在冰雪样品中测得的微量元素浓度相比,整个测量过程中的总空白量被证明可以忽略不计。这验证了所提出的超净程序的整体实用性,从而确保了超痕量分析的可靠测量。我们的研究与已发表数据的比较表明,从实地采样到分析,各个阶段均采用了不适当的程序,相对于可靠的浓度范围,其浓度升高了几个数量级。所选痕量元素的污染暴露风险似乎以U

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