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Experimental investigation of pneumatic soil vapor extraction

机译:气动土壤蒸气萃取的实验研究

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Soil Vapor Extraction (SVE) is a common remediation technique for removing volatile organic compounds from unsaturated contaminated soils. Soil heterogeneities can however cause serious limitations to the applicability of SVE due to air bypassing low permeable areas of the soil, leading to diffusion limitation of the remediation. To enhance removal from areas subject to diffusion limitation a new remediation technique, pneumatic soil vapor extraction, is proposed. In contrast to traditional SVE, in which soil vapor is extracted continuously by a vacuum pump, pneumatic SVE is based on enforcing a sequence of large pressure drops on the system to enhance the recovery from the low-permeable areas. The pneumatic SVE technique was investigated in the laboratory using TCE as a model contaminant. 2D-laboratory tank experiments were performed on homogeneous and heterogeneous sand packs. The heterogeneous packs consisted of a fine sand lens surrounded by a coarser sand matrix. As expected when using traditional SVE, the removal of TCE from the low permeable lens was extremely slow and subject to diffusion limitation. In contrast when pneumatic venting was used removal rates increased by up to 77%. The enhanced removal was hypothesized to be attributed to mixing of the contaminated air inside the lens and generation of net advective transport out of the lens due to air expansion.
机译:土壤蒸汽提取(SVE)是一种常见的修复技术,用于从不饱和污染的土壤中去除挥发性有机化合物。然而,由于空气绕过土壤的低渗透性区域,土壤异质性会严重限制SVE的适用性,从而导致修复的扩散受限。为了加强从受扩散限制的区域的清除,提出了一种新的补救技术,即气动土壤蒸气提取。与传统的SVE(通过真空泵连续抽取土壤蒸汽)相反,气动SVE基于在系统上强制执行一系列大压降,以增强从低渗透性地区的采收率。在实验室中使用TCE作为模型污染物研究了气动SVE技术。在均质和非均质砂包上进行了二维实验室储罐实验。异质包裹由细沙晶组成,被较粗的沙质基质包围。正如使用传统SVE所期望的那样,从低渗透性晶状体中去除三氯乙烯的过程非常缓慢,并且受到扩散限制。相反,使用气动排气时,去除率提高了77%。据推测,这种增强的去除是由于晶状体内部污染的空气混合以及由于空气膨胀而产生的净对流传输出晶状体。

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