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工业区域的集水径流从表土中输出的污染物锌是人为成因的,而非地球化学成因的锌。

Catchment Runoff in Industrial Areas Exports Legacy Pollutant Zinc from the Topsoil Rather than Geogenic Zn.

机构信息

Czech Geological Survey, Geologicka 6, 152 00 Prague 5, Czech Republic.

Faculty of Environmental Sciences, Czech University of Life Sciences, Kamycka 129, 165 21 Prague 6, Czech Republic.

出版信息

Environ Sci Technol. 2021 Jun 15;55(12):8035-8044. doi: 10.1021/acs.est.1c01167. Epub 2021 May 27.

Abstract

In highly industrialized, densely populated parts of Central Europe, mobilization of legacy Zn pollution from forest ecosystems may negatively affect the quality of water resources. To test this hypothesis, we determined the Zn/Zn isotope ratios of 15 Zn reservoirs and fluxes in an acidified, spruce die-back affected mountain-slope catchment in northern Czech Republic. The δZn values of precipitation, organic horizon, and runoff were statistically indistinguishable. In contrast, δZn values of bedrock orthogneiss and mineral soil were significantly different from δZn values of runoff. The magnitude of within-site Zn isotope fractionations appeared to be relatively small. Despite the large potential source of Zn in bedrock, runoff exported mostly young pollutant Zn that had been temporarily stored in the organic horizon. This conclusion was corroborated by comparing Zn input-output mass balances in the polluted northern catchment and in a relatively unpolluted catchment situated 250 km to the south. Seven-times higher Zn export runoff at the northern site was controlled by a combination of 10-times higher atmospheric Zn input and five-times higher DOC leaching, compared to the southern site. In industrial areas, atmospherically deposited Zn is leached from headwater catchments in a direct analogy to leaching of highly toxic pollutant Pb.

摘要

在中欧高度工业化和人口密集的地区,森林生态系统中遗留的 Zn 污染的迁移可能会对水资源质量产生负面影响。为了验证这一假设,我们测定了捷克北部受酸化和云杉衰退影响的山坡集水区中 15 个 Zn 储层和通量的 Zn/Zn 同位素比值。降水、有机层和径流水的 δZn 值在统计学上无显著差异。相比之下,基岩正长岩和矿物土壤的 δZn 值与径流水的 δZn 值有显著差异。场内 Zn 同位素分馏的幅度似乎相对较小。尽管基岩是 Zn 的潜在大来源,但径流水主要输出了暂时储存在有机层中的年轻污染物 Zn。这一结论通过比较污染北部集水区和相对未受污染的南部集水区的 Zn 输入-输出质量平衡得到了证实。与南部集水区相比,北部集水区的 Zn 输出 径流高出 7 倍,这是由于大气 Zn 输入增加了 10 倍,DOC 淋溶增加了 5 倍。在工业区,大气沉降的 Zn 像高度有毒污染物 Pb 的淋溶一样,直接从源头集水区淋溶出来。

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