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Micellar-enhanced ultrafiltration for the solubilization of various phenolic compounds with different surfactants

机译:胶束增强超滤,可使用不同的表面活性剂增溶各种酚类化合物

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Micellar-enhanced ultrafiltration (MEUF) was applied to the separation of phenolic compounds p-nitrophenol (PNP), p-chlorophenol (PCP), p-cresol (PC) and phenol (P) from effluents using a hydrophilic polyethersulfone ultrafiltration membrane. Cationic cetylpyridinium chloride (CPC), nonionic TX-100 and anionic sodium dodecyl benzene sulfonate (SDBS) were chosen as the surfactants. Several important parameters, i.e. the separation efficiency, the distribution coefficient of phenolic compounds and the removal ratio of surfactants, were investigated. It was shown that the separation efficiency and the distribution coefficient of phenolic compounds ascended with the increasing surfactant concentration and could be arranged as the following order: PNP > PCP > PC > P. Moreover, in the case of phenolic compound separation, CPC achieved the highest treatment efficiency, and the separation efficiency of SDBS was a little lower than that of TX-100. The removal ratios of the same surfactant when treating different phenolic effluents were nearly similar. However, when treating the same phenolic compound, the sequence of the surfactant rejection was in the following order: TX-100 > CPC > SDBS. These results indicate that CPC has a distinct superiority in the treatment of phenolic effluents via the MEUF process, and PNP easily solubilizes in the surface of the micelles.
机译:胶束增强超滤(MEUF)用于使用亲水性聚醚砜超滤膜从废水中分离酚类化合物对硝基苯酚(PNP),对氯苯酚(PCP),对甲酚(PC)和苯酚(P)。选择阳离子十六烷基氯化吡啶鎓(CPC),非离子TX-100和阴离子十二烷基苯磺酸钠(SDBS)作为表面活性剂。研究了几个重要参数,即分离效率,酚类化合物的分布系数和表面活性剂的去除率。结果表明,酚类化合物的分离效率和分布系数随表面活性剂浓度的增加而提高,排列顺序为:PNP> PCP> PC>P。此外,在酚类化合物的分离中,CPC达到了处理效率最高,SDBS的分离效率略低于TX-100。处理不同的酚类废水时,相同表面活性剂的去除率几乎相似。但是,当处理相同的酚类化合物时,表面活性剂排斥的顺序如下:TX-100> CPC> SDBS。这些结果表明,CPC在通过MEUF工艺处理酚类废水方面具有明显的优势,并且PNP容易溶解在胶束表面。

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