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Thermal Blanket for In-Situ Remediation of Suificial Contamination: A Pilot Test

机译:用于现场修复人为污染的热毯:先导测试

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Surficial PCB contamination has been successfully and safely removed from soils in a field test at the site of a former dragstrip where oil-containing PCBs had been sprayed to minimize airborne dust. Decontamination was achieved by electrically heating a 9.3-m~2 area under a thermal blanket, and PCB concentrations were reduced from up to 2000 ppm to less than 2 ppm in 24 h of heating. Initial PCB concentration in some of the more contaminated areas averaged 700 mg/kg from 0 to 7.5 cm deep and 100 mg/kg from 7.5 to 15 cm, with maximum concentrations as high as 2000 mg/kg at the surface. The thermal" blanket was operated at temperatures ranging from 815 to 925℃. It took about 20-24 h for a 15-cm depth to reach 200℃, which was sufficient to reduce the total PCB concentration to below the mandated 2 mg/kg cleanup levels. The variation of times to reach the desired temperature is principally related to soil water content. A vapor stream was drawn by vacuum from the thermal blanket at a rate of 550-1100 L(STP)/min. Vaporized groundwater constitutes from 40% to 70% of the vapor stream at the beginning of each heating cycle and therefore displaces a significant fraction of the air, but enough remains for oxidation of waste stream hydrocarbons in an external thermal oxidizer. We also tested 2.4 m x 6 m thermal blanket modules that could be assembled into large arrays to treat extensive areas. A full-scale thermal blanket system designed to treat this site would consist of 20 modules assembled into 288 m~2 thermal treatment systems, which require 1.8 MW of power and operate on a three-part cycle: heat and treat soil cool, and move to a new treatment area. Emissions from the blanket consist of organics, which are destroyed by passing through a flameless thermal oxidizer.
机译:在前拖板的现场测试中,已经成功,安全地从土壤中清除了表面上的PCB污染,在前拖板上喷涂了含油的PCB,以最大程度地减少空气中的灰尘。通过在加热毯下电加热9.3-m〜2的区域来实现去污,并且在加热24小时后,PCB的浓度从高达2000 ppm降低到小于2 ppm。在一些较受污染的区域中,最初的PCB浓度从0到7.5厘米深平均为700 mg / kg,从7.5到15厘米深为100 mg / kg,表面最高浓度为2000 mg / kg。隔热毯在815至925℃的温度范围内运行。15厘米深的温度大约需要20-24小时才能达到200℃,这足以将PCB的总浓度降至规定的2 mg / kg以下达到所需温度的时间变化主要与土壤含水量有关,通过真空从隔热毯中以550-1100 L(STP)/ min的速率抽出蒸汽流,其中蒸发的地下水占40%。在每个加热周期开始时,蒸汽流的百分比为70%至70%,因此置换了大量的空气,但仍有足够的余量用于外部热氧化器中的废气流碳氢化合物的氧化,我们还测试了2.4 mx 6 m的热毯模块设计成可对该区域进行处理的全尺寸热毯系统将由20个模块组成,这些模块组装成288 m〜2的热处理系统,需要1.8 MW的功率并运行一个三部分的循环:加热并冷却土壤,然后移至新的处理区域。毯子的排放物由有机物组成,有机物通过无焰热氧化剂而被破坏。

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