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Benchscale Assessment of the Efficacy of a Reactive Core Mat to Isolate PAH-spiked Aquatic Sediments

机译:基准评估反应性芯垫隔离多环芳烃加标水生沉积物的功效

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摘要

This paper describes the results of a benchscale testing program to assess the efficacy of a reactive core mat (RCM) for short term isolation and partial remediation of contaminated, subaqueous sediments. The 1.25 cm thick RCM (with a core reactive material such as organoclay with filtering layers on top and bottom) is placed on the sediment, and approximately 7.5 – 10 cm of overlying soil is placed on the RCM for stability and protection. A set of experiments were conducted to measure the sorption characteristics of the mat core (organoclay) and sediment used in the experiments, and to determine the fate of semi-volatile organic contaminants and non-reactive tracers through the sediment and reactive mat. The experimental study was conducted on naphthalene-spiked Neponset River (Milton, MA) sediment. The results show nonlinear sorption behavior for organoclay, with sorption capacity increasing with increasing naphthalene concentration. Neponset River sediment showed a notably high sorption capacity, likely due to the relatively high organic carbon fraction (14%). The fate and transport experiments demonstrated the short term efficiency of the reactive mat to capture the contamination that is associated with the post-capping period during which the highest consolidation-induced advective flux occurs, driving solid particles, pore fluid and soluble contaminants toward the reactive mat. The goal of the mat placement is to provide a physical filtering and chemically reactive layer to isolate contamination from the overlying water column. An important finding is that because of the high sorption capacity of the Neponset River sediment, the physical filtering capability of the mat is as critical as its chemical reactive capacity.
机译:本文介绍了一个基准测试程序的结果,该程序可以评估反应性芯垫(RCM)短期隔离和部分修复受污染的水下沉积物的功效。将1.25厘米厚的RCM(带有芯反应性材料,例如有机粘土,顶部和底部带有过滤层)放置在沉积物上,并将大约7.5 – 10 cm的覆土放置在RCM上,以实现稳定性和保护作用。进行了一组实验,以测量实验中使用的垫芯(有机粘土)和沉积物的吸附特性,并确定半挥发性有机污染物和非反应性示踪剂通过沉积物和反应垫的命运。实验研究是在萘加标的Neponset河(马萨诸塞州米尔顿)的沉积物中进行的。结果表明有机粘土的非线性吸附行为,随着萘浓度的增加吸附容量增加。纳蓬塞特河的沉积物显示出很高的吸附能力,这可能是由于有机碳含量较高(14%)所致。命运和运输实验表明,反应垫的短期效率是捕获与封顶后阶段相关的污染物的有效期,在封顶后期间,固结诱导的对流通量最高,从而将固体颗粒,孔隙流体和可溶性污染物推向反应堆垫。放置垫子的目的是提供一个物理过滤和化学反应层,以将污染物与上方的水柱隔离开。一个重要的发现是,由于Neponset河沉积物的高吸附能力,垫层的物理过滤能力与其化学反应能力一样重要。

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