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近年来大气中 Pb 沉积的减少以及对来自格陵兰西北部雪源贡献变化的同位素制约。

Recent decline in atmospheric Pb deposition and isotopic constraints on changes in source contributions in snow from northwestern Greenland.

机构信息

Korea Polar Research Institute, 26 Songdomirae-ro, Yeonsu-gu, Incheon, 21990, Republic of Korea.

Korea Polar Research Institute, 26 Songdomirae-ro, Yeonsu-gu, Incheon, 21990, Republic of Korea; Water Environmental Safety Management Department, Korea Water Resource Corporation, 200 Sintanjin-Ro, Daedeok-Gu, Daejeon, 34350, Republic of Korea.

出版信息

Chemosphere. 2023 Dec;345:140441. doi: 10.1016/j.chemosphere.2023.140441. Epub 2023 Oct 14.

Abstract

We present lead (Pb) concentrations and isotope ratios in a continuous series of 38 snow samples from a 1.9-m snow pit, covering the period from winter 2012 to summer 2017, at the East Greenland Ice-core Project (EGRIP) ice core drill site in northwestern Greenland. Pb concentrations were highly variable, ranging from 1.53 to 94.9 pg g (mean value of 10.6 pg g), with higher concentrations during winter and spring and lower concentrations during summer and fall. Our results show a substantial reduction in the Pb concentration of ∼50% between the 2000s and 2010s, reaching a level close to that observed in the mid-18th century, that is, the time of the Industrial Revolution. Remarkably low radiogenic Pb isotope compositions were observed in our samples compared to previously reported values during the 2000s. The Pb isotope mixing model results indicated a decreasing Chinese contribution from the 2000s onwards, while Europe/Russia emerged as a relatively more important contributor to the anthropogenic Pb input to central Greenland during the corresponding period. Thus, we hypothesized that the reduction in Pb pollution in central Greenland is largely due to a decreasing contribution from Chinese sources in response to the effectiveness of stringent emission control measures in China.

摘要

我们提供了一个 1.9 米深的雪坑中 38 个连续雪样的铅(Pb)浓度和同位素比值,这些雪样取自格陵兰岛西北部的东格陵兰冰芯项目(EGRIP)冰芯钻探点,时间跨度为 2012 年冬季至 2017 年夏季。Pb 浓度变化很大,范围在 1.53 到 94.9 pg g(平均值为 10.6 pg g)之间,冬季和春季浓度较高,夏季和秋季浓度较低。我们的结果表明,在 2000 年代和 2010 年代之间,Pb 浓度显著降低了约 50%,接近工业革命时期(即 18 世纪中叶)的水平。与 2000 年代之前报告的值相比,我们的样品中观察到的放射性 Pb 同位素组成显著较低。Pb 同位素混合模型结果表明,自 2000 年代以来,中国的贡献逐渐减少,而同期欧洲/俄罗斯对格陵兰岛中部人为 Pb 输入的贡献相对更为重要。因此,我们假设格陵兰岛中部 Pb 污染的减少主要归因于中国来源的贡献减少,这是对中国实施严格排放控制措施的有效性的回应。

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