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Effects of soil properties and biosurfactant on the behavior of PAHs in soil-water systems

机译:土壤特性和生物表面活性剂对土壤-水系统中多环芳烃行为的影响

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Background The interactions among biosurfactant, soil components and PAHs govern the efficiency of biosurfactant enhanced remediation, which was still poorly studied. In this study, we investigated effects of biosurfactant and soil properties on sorption and desorption of phenanthrene (PHE) and pyrene (PYR) in soil – water systems. Two kinds of soil samples (ditch and under plant) from the same petroleum contaminated site in western Canada were applied. Results The results indicate that soil organic matter (SOM) was the predominant factor that affects PAHs sorption onto soil. The SOM content in ditch soil was half of that in under plant soil, therefore ditch soil showed less sorption affinity to PAHs than under plant soil. We also examined the combined effects of soil DOM and biosurfactant on desorption of PAHs. The results indicated that more PAHs were desorbed from ditch soil than the under plant soil under the combined conditions. The SOM was still the key factor that determined desorption of PAHs. Besides, competitions among PAHs, DOM and surfactant for sorption sites exist. In high solute concentration system, the competition for sorption site was more severely than low concentration system and more PAHs were sequenced in soil phase in high PAH concentration system. Also in low biosurfactant system, less PAHs were desorbed from soil. Conclusions The study results should be helpful in broadening knowledge of biosurfactant enhanced bioremediation of PAHs.
机译:背景技术生物表面活性剂,土壤成分和PAHs之间的相互作用决定了生物表面活性剂增强修复的效率,但该研究仍然很少。在这项研究中,我们研究了生物表面活性剂和土壤性质对土壤-水系统中菲(PHE)和pyr(PYR)的吸附和解吸的影响。使用了加拿大西部同一石油污染地点的两种土壤样品(沟渠和植物园)。结果结果表明,土壤有机质(SOM)是影响PAHs吸附到土壤上的主要因素。沟渠土壤中的SOM含量是植物土壤下的SOM含量的一半,因此沟渠土壤对PAHs的吸附亲和力比植物土壤下低。我们还检查了土壤DOM和生物表面活性剂对PAHs解吸的综合作用。结果表明,在联合条件下,沟渠土壤中解吸的PAHs多于植物土壤。 SOM仍然是决定PAHs解吸的关键因素。此外,PAHs,DOM和表面活性剂之间存在吸附位竞争。在高溶质浓度系统中,对吸附位点的竞争比低浓度系统更为激烈,在高PAH浓度系统中,土壤相中的PAHs更多。同样在低生物表面活性剂系统中,较少的PAHs从土壤中解吸。结论研究结果应有助于拓宽生物表面活性剂增强PAHs生物修复的知识。

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