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An innovative in-situ DRAINage system for advanced groundwater reactive TREATment (in-DRAIN-TREAT)

机译:一种用于高级地下水反应处理的创新原位排水系统(排水治疗)

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摘要

The removal of groundwater contamination is a complex process due to the hydro-geochemical characteristics of the specific site, related maintenance and the possible presence of several types of pollutants, both organic and inorganic. In recent decades, there has been an increasing drive towards more sustainable treatment for contaminated groundwater as opposed to "intensive" treatments, i.e. with high requirements for onsite infrastructure, energy and resource use. In this study, a new remediation technology is proposed, combining the use of advanced drainage systems with adsorption processes, termed "In-situ reactive DRAINage system for groundwater TREATment" (In-DRAIN-TREAT). By taking advantage of the groundwater natural gradient, In-DRAIN-TREAT collects the contaminated groundwater via a drainage system and treats the polluted water directly into an active cell located downstream, avoiding external energy inputs. Preliminary results indicate the applicability and high efficiency of InDRAIN-TREAT when compared with a permeable reactive barrier (PRB). In-DRAIN-TREAT is applied to remediate a theoretical aquifer with low permeability, contaminated by a 13 m wide hexavalent chromium (Cr-VI) plume. This is achieved in less than a year, via a drain DN500, 32 m long, a 30 m(3) treatment cell filled with activated carbon and no energy consumption. A comparison with permeable barriers also shows a preliminary 63% volume reduction, with a related 10% decrease of remediation costs. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于特定部位的氢地球化学特征,相关维护和可能存在几种类型的污染物,有机和无机,去除地下水污染是一种复杂的过程。近几十年来,对污染地下水的更可持续治疗的越来越大的驱动,而不是“密集”治疗,即,对现场基础设施,能源和资源使用的高要求。在这项研究中,提出了一种新的修复技术,将使用先进的排水系统与吸附过程的使用相结合,称为“原位反应排水系统”(用于地下水处理)(排水静止)。通过利用地下水自然梯度,排水管治疗通过排水系统收集污染的地下水,并将污染的水直接处理到位于下游的有源电池中,避免外部能量输入。与可渗透的反应屏障(PRB)相比,初步结果表明Indrain治疗的适用性和高效率。施用中排出治疗以修复具有低渗透性的理论含水层,受13M宽的六价铬(CR-VI)羽流污染。这在不到一年内实现,通过漏极DN500,32米长,30米(3)个处理细胞填充有活性炭,没有能量消耗。与渗透屏障的比较还显示出初步的63%体积减少,其相关10%的修复成本降低。 (c)2020 elestvier有限公司保留所有权利。

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