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首页> 外文期刊>The Science of the Total Environment >Behavior of major and trace elements in a transient surface water/groundwater system following removal of a long-term wastewater treatment facility source
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Behavior of major and trace elements in a transient surface water/groundwater system following removal of a long-term wastewater treatment facility source

机译:去除长期废水处理设施源后,瞬态地表水/地下水系统中主要和微量元素的行为

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摘要

In many aquatic environments, municipal wastewater treatment facility (WWTF) effluent discharges influence local hydrologic and chemical connectivity between the surface-water and adjacent alluvial shallow-groundwater systems. Fourmile Creek located in Polk County, Iowa received effluent from the Ankeny WWTF for nearly forty years before it was shut down in November 2013. The decommissioning of the municipal WWTF provided a unique opportunity to characterize the recovery from impacts of treated wastewater discharge on water quality at the surface-water/groundwater interface in a shallow, unconfined alluvial aquifer.Dissolved major element and trace element concentrations in Fourmile Creek surface water, hyporheic-zone water, and shallow, unconfined groundwater were monitored upstream and downstream from the WWTF discharge before and after the shutdown. Multivariate statistical techniques including principal component analysis (PCA) and agglomerative hierarchical clustering (AHC) were used to differentiate source-water contributions, characterize elemental components, and describe surface-water/groundwater interaction dynamics. During the post-closure assessment, there was subsurface attenuation of wastewater constituents including Al. B, Cu, Gd, K, Mo. Na, P, Pb, Sb, and Zn. During the same time, groundwater concentrations increased for As, Ba, Ca, Fe, Mg, Mn, SiO2, Sr, and U and represented a profile characteristic of the shallow alluvial aquifer. Hydrologic conditions transitioned from predominantly wastewater infiltration and hyporheic exchange before the WWTF shutdown, to predominantly discharge of native groundwater. Precipitation-driven streamflow events created fluctuations in the groundwater water-table elevations, resulting in variable contact between the saturated and unsaturated zones within the unconfined, alluvial aquifer and intermittent exposure to constituents stored in the sediments. The inorganic fingerprint of municipal wastewater was flushed relatively quickly (519 weeks) from the hyporheic zone indicating that processes like diffusion or sorption/desorption that might extend recovery may not be important for many trace elements in this system. (C) 2019 Elsevier B.V. All rights reserved.
机译:在许多水生环境中,市政废水处理设施(WWTF)的废水排放会影响地表水与相邻冲积浅层地下水系统之间的局部水文和化学连通性。位于爱荷华州波克县的Fourmile Creek从Ankeny污水处理厂接收了将近40年的废水,然后在2013年11月被关闭。市政污水处理厂的退役提供了一个独特的机会,可以表征经过处理的废水排放对水质的影响中的恢复在WWTF排放之前和之后,对Fourmile Creek地表水,流变区水和浅,无限制地下水中溶解的主要元素和痕量元素浓度进行了监测。关闭后。多元统计技术包括主成分分析(PCA)和聚集层次聚类(AHC)用于区分源水贡献,表征元素成分并描述地表水/地下水相互作用动力学。在关闭后评估期间,废水成分(包括Al)的地下衰减。 B,Cu,Gd,K,Mo Na,P,Pb,Sb和Zn同时,As,Ba,Ca,Fe,Mg,Mn,SiO2,Sr和U的地下水浓度增加,代表了浅冲积含水层的剖面特征。水文条件从WWTF停工前的主要废水渗入和低交换性过渡到主要排放天然地下水。降水驱动的水流事件在地下水水位高程中造成了波动,导致无限制,冲积含水层内的饱和区和非饱和区之间发生了可变接触,并间歇性地暴露于沉积物中存储的成分。从流变区较快地冲洗了市政废水的无机指纹(519周),这表明扩散或吸附/解吸等可能延长回收率的过程对于该系统中的许多微量元素而言可能并不重要。 (C)2019 Elsevier B.V.保留所有权利。

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