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The Application Of A Mulch Biofilm Barrier For Surfactant Enhanced Polycyclic Aromatic Hydrocarbon Bioremediation

机译:覆盖生物膜阻隔剂在表面活性剂增强多环芳烃生物修复中的应用

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Lab scale mulch biofilm barriers were constructed and tested to evaluate their performance for preventing the migration of aqueous and surfactant solubilized PAHs. The spatial distribution of viable PAH degrader populations and resultant biofilm formation were also monitored to evaluate the performance of the biobarrier and the prolonged surfactant effect on the PAH degrading microorganism consortia in the biobarrier. Sorption and biodegradation of PAHs resulted in stable operation of the system for dissolved phenanthrene and pyrene during 150 days of experimentation. The nonionic surfactant could increase the solubility of phenanthrene and pyrene significantly. However, the biobarrier itself couldn't totally prevent the migration of micellar solubilized phenanthrene and pyrene. The presence of surfactant and the resultant highly increased phenanthrene or pyrene concentration didn't appear to cause toxic effects on the attached biofilm in the biobarrier. However, the presence of surfactant did change the structural composition of the biofilm.
机译:构建并测试了实验室规模的覆盖生物膜屏障,以评估其在防止水和表面活性剂溶解的PAH迁移方面的性能。还监测了有活力的PAH降解菌种群的空间分布和形成的生物膜形成,以评估生物屏障的性能以及表面活性剂对生物屏障中PAH降解微生物菌群的延长作用。在150天的实验过程中,PAHs的吸附和生物降解导致溶解的菲和pyr体系的稳定运行。非离子表面活性剂可以显着提高菲和pyr的溶解度。然而,生物屏障本身并不能完全阻止胶束溶解的菲和pyr的迁移。表面活性剂的存在以及由此产生的菲或pyr浓度的大幅提高似乎并未对生物屏障中附着的生物膜产生毒性作用。但是,表面活性剂的存在确实改变了生物膜的结构组成。

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