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Remediation of thallium-contaminated groundwater by permeable adsorptive barrier

机译:通过渗透吸附屏障对铊污染的地下水进行整理

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The deterioration of groundwater quality is a widespread concern mainly originating by accidental discharges and soil/landfills leaching. Permeable Adsorptive Barriers (PAB) represents a challenging in situ remediation technology, which consist of a continuous trench penetrating the aquifer at a full depth. A PAB is filled with an adsorptive material; groundwater flow moves under natural gradient and the remediation naturally occurs. This paper deals with the application of a PAB for the remediation of thallium T1(I) contaminated groundwater in Falciano del Massico, Italy. The polluted site is a solid waste landfill, where many wastes were dumped over the past decades, particularly during the crisis of waste and landfill management in large areas of the region of Campania (Italy). Sawdust is chosen as reactive material for PAB, as it showed good T1(I) removal capacity. Based on the hydrogeological and geotechnical characterization of the polluted aquifer, a 3D numerical model is developed to describe pollutant transport and adsorption mechanisms onto the barrier. Numerical simulations are accurately performed over a long time span, by means of Computational Fluid Dynamic approach developed in COMSOL~R Multiphysics. PAB configuration and design parameters are determined, in terms of location, shape and main dimensions, using a procedure previously developed. Results shows that the designed PAB is effective for the remediation of the contaminated aquifer, being T1(I) concentration flowing out the barrier always lower than Italian regulatory limit. Furthermore PAB has been demonstrated to be an efficient long term method for groundwater protection.
机译:地下水质量的恶化是一种广泛的关注,主要是由于意外排放和土壤/垃圾填埋场浸出。可渗透的吸附屏障(PAB)代表原位修复技术的具有挑战性,该技术由连续的沟槽以完整的深度穿透含水层。 PAB充满吸附材料;地下水流动在自然梯度下移动,并自然发生修复。本文涉及PA采取铊T1(i)污染地下水在意大利的污染地下水的应用。污染的部位是一个坚实的废物垃圾填埋场,在过去的几十年中,许多废物倾倒,特别是在坎帕尼亚(意大利)大地区的废物和垃圾填埋场管理中危机。选择锯末作为PAB的反应材料,因为它显示出良好的T1(i)去除能力。基于污染含水层的水文地质和岩土性表征,开发了3D数值模型,以将污染物运输和吸附机制描述到屏障上。通过在COMSOL〜R多体学中开发的计算流体动力学方法,在长时间跨度准确地进行数值模拟。在使用先前开发的程序的位置,形状和主要尺寸方面,确定PAB配置和设计参数。结果表明,设计的PAB对修复受污染的含水层的修复是有效的,T1(i)浓度流出屏障总是低于意大利监管极限。此外,已证明PAB是一种有效的地下水保护方法。

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