Department of Biology, University of North Carolina at Greensboro , Greensboro, North Carolina 27402, United States.
U.S.D.A. Forest Service, Northern Research Station , Grand Rapids, Minnesota 55744, United States.
Environ Sci Technol. 2018 Feb 20;52(4):1854-1861. doi: 10.1021/acs.est.7b04449. Epub 2018 Jan 29.
Stable isotope compositions of mercury (Hg) were measured in the outlet stream and in soil cores at different landscape positions in a 9.7-ha boreal upland-peatland catchment. An acidic permanganate/persulfate digestion procedure was validated for water samples with high dissolved organic matter (DOM) concentrations through Hg spike addition analysis. We report a relatively large variation in mass-dependent fractionation (δHg; from -2.12 to -1.32‰) and a smaller, but significant, variation of mass-independent fractionation (ΔHg; from -0.35 to -0.12‰) during two years of sampling with streamflow varying from 0.003 to 7.8 L s. Large variations in δHg occurred only during low streamflow (<0.6 L s), which suggest that under high streamflow conditions a peatland lagg zone between the bog (3.0 ha) and uplands (6.7 ha) becomes the dominant source of Hg in downstream waters. Further, a binary mixing model showed that except for the spring snowmelt period, Hg in streamwater from the catchment was mainly derived from dry deposition of gaseous elemental Hg (73-95%). This study demonstrates the usefulness of Hg isotopes for tracing sources of Hg deposition, which can lead to a better understanding of the biogeochemical cycling and hydrological transport of Hg in headwater catchments.
在一个 9.7 公顷的北方旱地泥炭地集水区中,我们在不同景观位置的出水口溪流和土壤芯中测量了汞 (Hg) 的稳定同位素组成。通过添加 Hg 标样的分析,验证了一种适用于高溶解有机质 (DOM) 浓度水样的酸性高锰酸盐/过硫酸盐消解程序。我们报告了在两年的采样过程中,质量依赖分馏(δHg;从-2.12 到-1.32‰)存在较大的变化,而质量独立分馏(ΔHg;从-0.35 到-0.12‰)的变化较小,但具有显著意义,在此期间,溪流流量从 0.003 到 7.8 L s 不等。δHg 的较大变化仅发生在低流量 (<0.6 L s) 期间,这表明在高流量条件下,沼泽(3.0 公顷)和旱地(6.7 公顷)之间的泥炭地滞后区成为下游水中 Hg 的主要来源。此外,二元混合模型表明,除了春季融雪期外,集水区中溪流水中的 Hg 主要来自气态元素 Hg 的干沉降 (73-95%)。这项研究证明了 Hg 同位素在追踪 Hg 沉积源方面的有用性,这可以更好地了解 Hg 在源头集水区中的生物地球化学循环和水文传输。