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美国特拉华河城市河口的甲基汞生物累积

Methylmercury bioaccumulation in an urban estuary: Delaware River USA.

作者信息

Buckman Kate, Taylor Vivien, Broadley Hannah, Hocking Daniel, Balcom Prentiss, Mason Rob, Nislow Keith, Chen Celia

机构信息

Department of Biological Sciences, Dartmouth College, Hanover NH.

Department of Earth Sciences, Dartmouth College, Hanover NH.

出版信息

Estuaries Coast. 2017 Sep;40(5):1358-1370. doi: 10.1007/s12237-017-0232-3. Epub 2017 Mar 10.

Abstract

Spatial variation in mercury (Hg) and methylmercury (MeHg) bioaccumulation in urban coastal watersheds reflects complex interactions between Hg sources, land use, and environmental gradients. We examined MeHg concentrations in fauna from the Delaware River estuary, and related these measurements to environmental parameters and human impacts on the waterway. The sampling sites followed a north to south gradient of increasing salinity, decreasing urban influence, and increasing marsh cover. Although mean total Hg in surface sediments (top 4cm) peaked in the urban estuarine turbidity maximum and generally decreased downstream, surface sediment MeHg concentrations showed no spatial patterns consistent with the examined environmental gradients, indicating urban influence on Hg loading to the sediment but not subsequent methylation. Surface water particulate MeHg concentration showed a positive correlation with marsh cover whereas dissolved MeHg concentrations were slightly elevated in the estuarine turbidity maximum region. Spatial patterns of MeHg bioaccumulation in resident fauna varied across taxa. Small fish showed increased MeHg concentrations in the more urban/industrial sites upstream, with concentrations generally decreasing farther downstream. Invertebrates either showed no clear spatial patterns in MeHg concentrations (blue crabs, fiddler crabs) or increasing concentrations further downstream (grass shrimp). Best-supported linear mixed models relating tissue concentration to environmental variables reflected these complex patterns, with species specific model results dominated by random site effects with a combination of particulate MeHg and landscape variables influencing bioaccumulation in some species. The data strengthen accumulating evidence that bioaccumulation in estuaries can be decoupled from sediment MeHg concentration, and that drivers of MeHg production and fate may vary within a small region.

摘要

城市沿海流域汞(Hg)和甲基汞(MeHg)生物累积的空间变化反映了汞源、土地利用和环境梯度之间的复杂相互作用。我们检测了特拉华河河口动物体内的甲基汞浓度,并将这些测量结果与环境参数以及人类对该水道的影响相关联。采样地点沿着盐度升高、城市影响减弱和沼泽覆盖增加的南北梯度分布。尽管表层沉积物(顶部4厘米)中的平均总汞在城市河口浊度极大值处达到峰值,并且通常在下游降低,但表层沉积物甲基汞浓度并未显示出与所检测的环境梯度一致的空间模式,这表明城市对沉积物汞负荷有影响,但对随后的甲基化没有影响。地表水颗粒态甲基汞浓度与沼泽覆盖呈正相关,而溶解态甲基汞浓度在河口浊度极大值区域略有升高。常住动物体内甲基汞生物累积的空间模式因分类群而异。小型鱼类在更上游的城市/工业区汞浓度增加,而在下游更远的地方浓度通常降低。无脊椎动物体内甲基汞浓度要么没有明显的空间模式(蓝蟹、招潮蟹),要么在下游进一步增加(草虾)。将组织浓度与环境变量相关联的最佳支持线性混合模型反映了这些复杂模式,特定物种的模型结果主要由随机站点效应主导,颗粒态甲基汞和景观变量的组合在某些物种中影响生物累积。这些数据强化了越来越多的证据,即河口的生物累积可能与沉积物甲基汞浓度脱钩,并且甲基汞产生和归宿的驱动因素可能在一个小区域内有所不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e659/5621658/cb25899c4b5d/nihms859456f1.jpg

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