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Potential contaminants at a dredged spoil placement site, Charles City County, Virginia, as revealed by sequential extraction

机译:逐次提取显示,在弗吉尼亚州查尔斯市县挖泥场中的潜在污染物

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摘要

Backfills of dredged sediments onto a former sand and gravel mine site in Charles City County, VA may have the potential to contaminate local groundwater. To evaluate the mobility of trace elements and to identify the potential contaminants from the dredged sediments, a sequential extraction scheme was used to partition trace elements associated with the sediments from the local aquifer and the dredged sediments into five fractions: exchangeable, acidic, reducible, oxidizable, and residual phases. Sequential extractions indicate that, for most of the trace elements examined, the residual phases account for the largest proportion of the total concentrations, and their total extractable fractions are mainly from reducible and oxidizable phases. Only Cd, Pb, and Zn have an appreciable extractable proportion from the acidic phase in the filled dredged sediments. Our groundwater monitoring data suggest that the dredged sediments are mainly subject to a decrease in pH and a series of oxidation reactions, when exposed to the atmosphere. Because the trace elements released by carbonate dissolution and the oxidation (e.g., organic matter degradation, iron sulfide and, ammonia oxidation) are subsequently immobilized by sorption to iron, manganese, and aluminum oxides, no potential contaminants to local groundwater are expected by addition of the dredged sediments to this site.
机译:将疏dr的沉积物回填到弗吉尼亚州查尔斯市县以前的沙子和碎石矿场可能会污染当地的地下水。为了评估微量元素的迁移率并确定挖出的沉积物中的潜在污染物,采用了顺序提取方案,将与当地含水层和挖出的沉积物中的沉积物相关的微量元素划分为五个部分:可交换,酸性,可还原,可氧化相和残留相。顺序萃取表明,对于所检查的大多数痕量元素,残留相占总浓度的最大比例,其总可萃取馏分主要来自可还原相和可氧化相。在填充的疏sediment沉积物中,只有Cd,Pb和Zn具有可从酸性相中提取的比例。我们的地下水监测数据表明,疏exposed的沉积物暴露于大气中时,主要会导致pH值下降和一系列氧化反应。由于碳酸盐溶解和氧化释放的痕量元素(例如,有机物降解,硫化铁和氨氧化)随后通过吸附固定在铁,锰和氧化铝上,因此,通过添加三价铁不会对当地地下水造成潜在的污染物。疏sediment的沉积物到该地点。

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