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Waste minimization in the remediation of contaminated sites: using the oil belt skimmer technology for the removal of heavy hydrocarbons from groundwater

机译:污染地点修复中的废物最小化:利用油带撇渣器技术从地下水中去除重型碳氢化合物

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摘要

Modern society increasingly requires achieving the goal of remediation and at the same time minimizing the waste to be disposed. Although the pump and treat is a consolidated technology option for the decontamination of groundwater polluted by heavy hydrocarbons, it generates an excessive amount of waste (typically, dangerous). With the intent of reducing such waste, our study is concerned with the verification of the oil belt skimmer technology for the decontamination of a heavy hydrocarbon-polluted groundwater. For this purpose, several tests at laboratory scale and full-scale experimentations with duration greater than 1 year were carried out. The obtained results showed the feasibility of the investigated technology for groundwater decontamination in the cases where the water mobility (of the aquifer) was low and in the presence of oil thicknesses greater than 2 cm. The heavy hydrocarbon recovery capacities were in the range of 33.3-85.5 l/h with the best performances in the cases of supernatant thickness >= 2 cm and pumping of the water table in such a way that the oil acquires a higher mobility in the aquifer. Moreover, the recovery capacity was found to be dependent on the rainfall pattern as well as on the groundwater fluctuation. Compared to the pump-and-treat system, the investigated technology allowed reducing by 98.7 % the amount of waste to be disposed suggesting the use in presence of high thickness of the oils. Finally, in a view of system optimization, treatment trains based on the combination of the oil belt skimmer technology and the pump-and-treat system should be carefully assessed.
机译:现代社会越来越需要实现整治的目标,同时最大限度地减少浪费。虽然泵和治疗是一种综合技术选择,用于净化由重烃污染的地下水,产生过量的废物(通常是危险)。随着减少这种浪费的目的,我们的研究涉及验证油带撇油技术,用于净化烃污染地下水的净化。为此目的,进行实验室规模的几次测试和持续时间大于1年的全面实验。所得结果表明,在水迁移率(含水层)低且在油厚度大于2cm的情况下,对地下水净化技术的可行性。重质烃恢复能力在33.3-85.5升/小时的范围内,上清液厚度的最佳性能> = 2cm,并以这样的方式泵送油在含水层中获得更高的移动性。此外,发现恢复能力依赖于降雨模式以及地下水波动。与泵和治疗系统相比,调查技术允许减少98.7%的废物量,旨在在高厚度的油中使用。最后,在系统优化的视图中,应仔细评估基于油带撇油技术和泵和治疗系统的组合的治疗列车。

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