US Geological Survey, 720 Gracern Rd, Suite 129, Columbia, South Carolina 29210-7651, United States.
Environ Sci Technol. 2010 Dec 15;44(24):9285-90. doi: 10.1021/es102917j. Epub 2010 Nov 16.
Mercury (Hg) burdens in top-predator fish differ substantially between adjacent South Carolina Coastal Plain river basins with similar wetlands coverage. In the Congaree River, floodwaters frequently originate in the Blue Ridge and Piedmont regions, where wetlands coverage and surface water dissolved methylmercury (MeHg) concentrations are low. Piedmont-driven flood events can lead to downward hydraulic gradients in the Coastal Plain riparian wetland margins, inhibiting MeHg transport from wetland sediments, and decreasing MeHg availability in the Congaree River habitat. In the adjacent Edisto River basin, floodwaters originate only within Coastal Plain sediments, maintaining upward hydraulic gradients even during flood events, promoting MeHg transport to the water column, and enhancing MeHg availability in the Edisto River habitat. These results indicate that flood hydrodynamics contribute to the variability in Hg vulnerability between Coastal Plain rivers and that comprehensive regional assessment of the relationship between flood hydrodynamics and Hg risk in Coastal Plain streams is warranted.
在相邻的南卡罗来纳沿海平原流域,尽管湿地覆盖率相似,但顶级掠食性鱼类中的汞(Hg)负担却有很大差异。在康加里河,洪水通常发源于蓝岭和皮埃蒙特地区,这些地区的湿地覆盖率和地表水中溶解的甲基汞(MeHg)浓度较低。皮埃蒙特驱动的洪水事件可能导致沿海平原河岸湿地边缘的水力梯度下降,抑制了 MeHg 从湿地沉积物中的迁移,并降低了康加里河生境中的 MeHg 可用性。在相邻的埃迪斯托河流域,洪水仅源自沿海平原沉积物,即使在洪水期间也保持着向上的水力梯度,促进了 MeHg 向水柱中的迁移,并增加了埃迪斯托河生境中的 MeHg 可用性。这些结果表明,洪水水动力是导致沿海平原河流之间汞脆弱性差异的因素之一,因此有必要对沿海平原溪流中洪水水动力与汞风险之间的关系进行全面的区域评估。