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冻融循环对存在生物表面活性剂时多环芳烃污染土壤解吸行为的影响:加拿大西部的一个案例研究

Effects of freeze-thawing cycles on desorption behaviors of PAH-contaminated soil in the presence of a biosurfactant: a case study in western Canada.

作者信息

Yao Y, Huang G H, An C J, Cheng G H, Wei J

机构信息

Faculty of Engineering and Applied Science, University of Regina, Regina, Saskatchewan S4S 0A2, Canada.

出版信息

Environ Sci Process Impacts. 2017 Jun 21;19(6):874-882. doi: 10.1039/c7em00084g.

Abstract

Many regions in Canada are facing increasing environmental threats posed by oil and gas exploitation and transportation. These contaminated lands are inevitably subjected to seasonal and diurnal freeze-thawing cycles (FTCs). However, knowledge about the effect of FTCs on the behaviours of hydrophobic contaminants during the aging process of soil is limited. This study investigated the desorption characteristics of phenanthrene in aging soils in the presence of the biosurfactant rhamnolipid under diurnal and seasonal FTC treatments. It was found that the presence of rhamnolipid in soil during the aging process was able to increase the desorption efficiency of phenanthrene. In the presence of rhamnolipid above 100 mg L, FTCs could inhibit the sequestration of phenanthrene. Soil moisture and rhamnolipid concentration are two major factors affecting this effect. High moisture content and FTC frequency could lead to lower desorption in the early stage of FTCs due to the increased specific surface area. The sequestration of phenanthrene was less effectively hindered under seasonal FTCs than diurnal FTCs. The results from this study have important implications for understanding the role of surfactants in cold-region soil aging, and for the improvement of site remediation strategies of PAH contaminated soil in cold regions.

摘要

加拿大的许多地区正面临着石油和天然气开采与运输带来的日益严重的环境威胁。这些受污染的土地不可避免地会经历季节性和昼夜冻融循环(FTCs)。然而,关于冻融循环对土壤老化过程中疏水性污染物行为的影响的知识却很有限。本研究调查了在昼夜和季节性冻融循环处理下,生物表面活性剂鼠李糖脂存在时老化土壤中菲的解吸特性。研究发现,老化过程中土壤中鼠李糖脂的存在能够提高菲的解吸效率。当鼠李糖脂浓度高于100 mg/L时,冻融循环能够抑制菲的固存。土壤湿度和鼠李糖脂浓度是影响这种效应的两个主要因素。由于比表面积增加,高含水量和冻融循环频率会导致冻融循环早期解吸率降低。与昼夜冻融循环相比,季节性冻融循环对菲固存的阻碍作用较小。本研究结果对于理解表面活性剂在寒冷地区土壤老化中的作用以及改进寒冷地区多环芳烃污染土壤的场地修复策略具有重要意义。

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