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A mobile pool of contaminated sediment in the Penobscot Estuary, Maine, USA

机译:美国缅因州Penobscot河口的一个被污染的沉积物移动池

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The natural recovery of estuaries from contamination is largely determined by the timescale over which contaminated sediment is exported or buried and replaced by cleaner sediment that enters from the watershed or the ocean. That timescale depends on the size of the "pool" of contaminated sediment that resides in the estuary. The larger the pool, the longer the recovery timescale for a given rate of sediment input A field study was undertaken as part of a study of mercury contamination in the Penobscot estuary to assess the mechanisms affecting the transport and fate of contaminated sediment. Based on measurements of water properties, currents and sediment transport and seabed samples analyzed for sediment properties and contaminant concentrations, a "mobile pool" of contaminated sediment with relatively uniform geochemical characteristics along a 20-km reach of the estuary was identified. This pool of sediment is mobilized seasonally by resuspension and trapping processes associated with salinity fronts that vary in location with discharge conditions. Sediment is transported down-estuary during high discharge and up-estuary during low discharge, with seasonal, bi-directional transport of sediment in the estuary significantly exceeding the annual input of new sediment from the watershed. This continual, bi-directional transport leads to homogenization of the chemical properties of the mobile sediment, including contaminant concentrations. The large mass of mobile sediment relative to the input of sediment from the watershed helps explain the long recovery timescale of contaminants in the Penobscot estuary.
机译:河口从污染中的自然恢复在很大程度上取决于被污染的沉积物被出口或掩埋并被从分水岭或海洋进入的更清洁的沉积物所替代的时间范围。该时间尺度取决于位于河口的受污染沉积物“池”的大小。对于给定的沉积物输入速率,水池越大,恢复时间越长。Penobscot河口汞污染研究的一部分进行了实地研究,以评估影响受污染的沉积物迁移和归宿的机制。根据对水质,洋流和沉积物输送的测量以及对沉积物特性和污染物浓度进行分析的海床样品,在沿河口20公里的范围内,确定了具有相对统一的地球化学特征的受污染沉积物的“移动池”。通过与盐度前沿相关的重悬和捕集过程,季节性移动该沉积物池,盐度前沿随排放条件的位置而变化。高流量时沉积物向下河口输送,低流量时沉积物向上河口输送,河口中泥沙的季节性双向输送大大超过了分水岭每年新增的泥沙输入量。这种连续的双向运输导致了可移动沉积物的化学特性(包括污染物浓度)的均质化。相对于来自流域的泥沙输入,大量的活动泥沙有助于解释Penobscot河口污染物恢复时间长的问题。

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