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Treatment of textile plant effluent by nanofiltration and/or reverse osmosis for water reuse

机译:通过纳滤和/或反渗透处理纺织厂废水以回用水

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摘要

This work concerns the treatment of textile plant effluent after conventional biological processing.The objective was a feasibility study of the combination of physicochemical treatment with nanofiltration (NF) and/or reverse osmosis (RO) for water reuse.In fact,dead-end filtration by microfiltration (MF),ultrafiltration (UF),NF and RO tests showed that a primary physicochemical treatment (coagulation/flocculation) was necessary to limit membrane fouling.Two coagulants (organic polyelectrolyte and/or ferric chloride) were tested and compared by carrying out jar-tests using different chemical concentrations at pH 6.8.Then,NF and/or RO experiments were performed and investigated at different operating pressures.Results showed that NF allowed the higher flow rate,90 Lcentre doth~(-1)centre dotm~(-1) at 18.5 bar transmembrane pressure.Moreover,the permeate quality obtained in this condition was similar to the RO.Conductivity,absorbance at 490 nm and the dissolved organic carbon value of the NF permeates were lower than 390 muScentre dotcm~(-1),0 and 2 mgcentre dotL~(-1)of C,respectively.The percent production rate increased with the transmembrane pressure.NF performed at 18.5 bar transmembrane pressure allowed a higher yield (22.6%) than RO (18.3%).
机译:这项工作涉及常规生物处理后对纺织厂废水的处理。目标是将物理化学处理与纳滤(NF)和/或反渗透(RO)结合用于水回用的可行性研究。实际上,死端过滤通过微滤(MF),超滤(UF),NF和RO测试表明,必须进行初步物理化学处理(混凝/絮凝)以限制膜结垢。对两种混凝剂(有机聚电解质和/或氯化铁)进行了测试和比较在pH 6.8下使用不同的化学浓度进行广口瓶测试,然后在不同的工作压力下进行了NF和/或RO实验并进行了研究,结果表明NF允许较高的流速,为90 Lcentre〜(-1)centm〜 (-1)在18.5 bar的跨膜压力下。此外,在此条件下获得的渗透物质量与RO相似。电导率,490 nm处的吸光度和四氯化碳的溶解有机碳值e NF渗透物​​分别低于390μS·cm·(-1),0和2 mg·L··-1(-1)C。随着跨膜压力的增加,生产率提高。在18.5 bar跨膜压力下进行的NF渗透率更高。收率(22.6%)高于反渗透(18.3%)。

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