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首页> 外文期刊>Environmental engineering and management journal >SEPARATION OF NATURAL MONOCYCLIC PHENOLICS USING MICELLAR ENHANCED ULTRAFILTRATION WITH A CATIONIC SURFACTANT
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SEPARATION OF NATURAL MONOCYCLIC PHENOLICS USING MICELLAR ENHANCED ULTRAFILTRATION WITH A CATIONIC SURFACTANT

机译:阳离子表面活性剂的胶束强化超滤分离天然单酚

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Phenolic compounds are known as recalcitrant pollutants in many industrial wastewaters, e.g. olive mill wastewater. An efficient treatment is therefore needed before the discharge of phenol-containing wastewaters into the environment. The possibility of removing some natural occurring phenolics, namely tyrosol, p-coumaric acid and vanillic acid, by micellar-enhanced ultrafiltration (MEUF) using a cationic surfactant, cetylpyridinium chloride (CPC), and polyethersulfone membranes of 20 and 50 kDa molecular weight cut-off (MWCO), was investigated. The effect of the surfactant and the solute concentrations on the retention and the permeate fluxes were studied. The elimination and recovery of the surfactant from the retentate stream under its Krafft point was also investigated. The rejection of vanillic acid and p-coumaric acid was higher than the rejection of tyrosol. The CPC was found to contribute significantly to the fouling phenomenon causing about 63% of flux reduction when using 2 CMC (1.8 mM) of the CPC. The increase of the feed concentration from 0.3 to 0.9 g/L (phenolic mixture) decreases the rejection rates from the range of 51-54% to 31-33%. The precipitation of CPC under its Krafft temperature allowed the recovery of about 92% of the initial concentration of CPC from retentate streams. The obtained results showed that the MEUF process can be used efficiently for the recovery of phenolic compounds from wastewaters and that the surfactant can be recovered from the retentate stream and reused.
机译:酚类化合物在许多工业废水中被称为顽固污染物,例如橄榄磨坊废水。因此,在将含酚废水排放到环境中之前需要进行有效的处理。通过使用阳离子表面活性剂,十六烷基氯化吡啶鎓(CPC)和分子量分别为20和50 kDa的聚醚砜膜进行胶束增强超滤(MEUF),可以去除某些天然存在的酚类化合物,例如酪醇,对香豆酸和香草酸-off(MWCO),进行了研究。研究了表面活性剂和溶质浓度对保留量和渗透通量的影响。还研究了在其Krafft点下从截留物流中除去和回收表面活性剂的方法。香草酸和对香豆酸的截留率高于酪醇的截留率。当使用2 CMC(1.8 mM)的CPC时,发现CPC明显有助于结垢现象,导致大约63%的助焊剂减少。进料浓度从0.3 g / L(酚混合物)增加到0.9 g / L,使废品率从51-54%降低到31-33%。 CPC在其Krafft温度下的沉淀使得从滞留物流中回收到CPC初始浓度的约92%。所得结果表明,MEUF方法可有效地用于从废水中回收酚类化合物,表面活性剂可从渗余物流中回收并再利用。

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