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北极地区湖泊的铅污染及其对大气沉降减少的响应:正在发生的气候变化会否抵消恢复过程?

Lead contamination of subarctic lakes and its response to reduced atmospheric fallout: can the recovery process be counteracted by the ongoing climate change?

机构信息

Climate Impacts Research Centre, Department of Ecology and Environmental Science, Umeå University, Abisko, Sweden.

出版信息

Environ Sci Technol. 2010 Apr 1;44(7):2335-40. doi: 10.1021/es903025z.

Abstract

Can a climate-triggered export of old contaminants from the soil alter the lead (Pb) contaminant burden of subarctic lakes? To address this question, we reconstructed the pollution history of three high latitude lakes situated in a region where a recent climatic shift has occurred. Dated sediment records were used as archives of past Pb inputs to the lakes, where the difference in the (206)Pb/(207)Pb ratio between atmospheric contaminants ((206)Pb/(207)Pb ratio <1.16) and geogenic Pb in the catchment soil ((206)Pb/(207)Pb ratio >1.22) were used to trace fluxes of Pb contaminants. Lead contaminants were found in sediments deposited since Roman times. A significant export of Pb from the soil contaminant pool is indicated in two of the lakes surrounded by near-shore permafrost soils. Here, levels of Pb contaminants and (206)Pb/(207)Pb ratios of sediments deposited after the 1970s appear not to have been strongly affected by the >or=90% reduction in atmospheric deposition rates and increasing (206)Pb/(207)Pb ratios of atmospheric Pb since the 1990s. We concluded that soil processes stimulated by the ongoing climate change at high latitudes might work counteractive to efforts to reduce contaminant levels in subarctic lakes.

摘要

土壤中旧污染物的排放能否改变北极湖泊的铅(Pb)污染物负担?为了解决这个问题,我们重建了三个位于最近气候发生变化地区的高纬度湖泊的污染历史。年代沉积物记录被用作湖泊过去 Pb 输入的档案,其中大气污染物之间(206)Pb/(207)Pb 比值的差异(206)Pb/(207)Pb 比值<1.16)和流域土壤中的原生 Pb(206)Pb/(207)Pb 比值>1.22)被用来追踪 Pb 污染物的通量。自罗马时代以来,沉积物中就发现了 Pb 污染物。在两个受近岸永冻土土壤环绕的湖泊中,表明 Pb 污染物从土壤污染物库中大量排出。在这里,自 20 世纪 90 年代以来,大气 Pb 的沉积率增加和(206)Pb/(207)Pb 比值增加,超过 90%,而 20 世纪 70 年代以后沉积的 Pb 污染物水平和沉积物(206)Pb/(207)Pb 比值似乎并未受到强烈影响。我们得出结论,高纬度地区正在发生的气候变化引起的土壤过程可能会抵消减少北极湖泊污染物水平的努力。

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