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Effect of a non-ionic surfactant on biodegradation of slowly desorbing PAHs in contaminated soils

机译:非离子表面活性剂对污染土壤中缓慢解吸的PAHs的生物降解作用

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摘要

The influence of the nonionic surfactant Brij 35 on biodegradation of slowly desorbing polycyclic aromatic hydrocarbons (PAHs) was determined in contaminated soils. We employed a soil originated from a creosote-polluted site, and a manufactured gas plant soil that had been treated by bioremediation. The two soils differed in their total content in five indicator 3-, 4-, and 5-ring PAHs (2923 mg kg(-1) and 183 mg kg(-1) in the creosote-polluted and bioremediated soils, respectively) but had a similar content (140 mg kg(-1) vs 156 mg kg(-1)) of slowly desorbing PAHs. The PAHs present in the bioremediated soil were highly recalcitrant. The surfactant at a concentration above its critical micelle concentration enhanced the biodegradation of slowly desorbing PAHs in suspensions of both soils, but it was especially efficient with bioremediated soil, causing a 62% loss of the total PAH content. An inhibition of biodegradation was observed with the high-molecular-weight PAHs pyrene and benzo[a]pyrene in the untreated soil, possibly due to competition effects with other solubilized PAHs present at relatively high concentrations. We suggest that nonionic surfactants may improve bioremediation performance with soils that have previously undergone extensive bioremediation to enrich for a slowly desorbing profile.
机译:在受污染的土壤中,测定了非离子表面活性剂Brij 35对缓慢解吸的多环芳烃(PAHs)生物降解的影响。我们使用了一种由杂酚油污染的地点产生的土壤,以及经过生物修复处理的人造气植物土壤。两种土壤在五种指示性3、4和5环多环芳烃中的总含量不同(在杂酚油污染和生物修复的土壤中分别为2923 mg kg(-1)和183 mg kg(-1)),但缓慢解吸的PAH含量相似(140 mg kg(-1)对156 mg kg(-1))。存在于生物修复土壤中的多环芳烃具有高度抗性。浓度高于其临界胶束浓度的表面活性剂可促进两种土壤悬浮液中缓慢解吸的PAH的生物降解,但对生物修复的土壤尤为有效,导致总PAH含量减少62%。在未处理的土壤中,高分子量的PAHs pyr和苯并[a] observed被观察到对生物降解的抑制作用,这可能是由于与浓度相对较高的其他可溶性PAHs的竞争作用所致。我们建议非离子表面活性剂可以提高土壤的生物修复性能,这些土壤以前已经进行了广泛的生物修复以富集缓慢解吸的剖面。

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