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Phenanthrene removal in unsaturated soils treated by electrokinetics with different surfactants-Triton X-100 and rhamnolipid

机译:动力学处理不同表面活性剂Triton X-100和鼠李糖脂对非饱和土壤中菲的去除

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摘要

In this study, the remediation performance of electrokinetic (EK) technology integrated with different surfactants for removing phenanthrene from unsaturated soils was investigated. A synthetic surfactant (Triton X-100) and a biosurfactant (rhamnolipid) were used to enhance phenanthrene solubility and removal efficiency during EK process. Results indicate that the electro-osmotic flow (EOF) rate in the rhamnolipid system is higher than that in Triton X-100. Using the EK technology for the removal of phenanthrene in the presence of rhamnolipid was more efficient than in the presence of Triton X-100. In addition to the transport mechanism of phenanthrene in EK system, the presence of rhamnolipid may promote microbial growth in the soil-water system and bring about biodegradation of phenanthrene. A diffusion-advection-sorption (DAS) model was solved by MATLAB, based on the linear sorption isotherm at the non-equilibrium condition, which is feasible to simulate the movement of phenanthrene during the EK + Triton X-100 treatment.
机译:在这项研究中,研究了电动技术(EK)结合不同表面活性剂对非饱和土壤中菲的修复性能。合成表面活性剂(Triton X-100)和生物表面活性剂(鼠李糖脂)用于增强EK过程中菲的溶解度和去除效率。结果表明,鼠李糖脂系统中的电渗流(EOF)速率高于Triton X-100。在鼠李糖脂存在下,使用EK技术去除菲比在Triton X-100存在下更有效。除菲在EK系统中的迁移机理外,鼠李糖脂的存在还可以促进土壤-水系统中微生物的生长,并导致菲的生物降解。基于非平衡条件下的线性吸附等温线,通过MATLAB求解了扩散-对流-吸附(DAS)模型,这对于模拟EK + Triton X-100处理过程中菲的运动是可行的。

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