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A system coupling hybrid biological method with UV/O-3 oxidation and membrane separation for treatment and reuse of industrial laundry wastewater

机译:一种将生物混合法与UV / O-3氧化和膜分离相结合的系统,用于处理和再利用工业洗衣废水

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摘要

The possibilities of application of a three-step system combining hybrid biological treatment followed by advanced UV/O-3 oxidation with in situ generated O-3 and membrane separation (ultrafiltration (UF) and nanofiltration (NF)) to treat and reuse the wastewater from an industrial laundry are presented. By the application of a hybrid moving bed biofilm reactor (HMBBR), the total organic carbon concentration was reduced for about 90 %. However, since the HMBBR effluent still contained organic contaminants as well as high concentrations of inorganic ions and exhibited significant turbidity (8.2 NTU), its further treatment before a possible reuse in the laundry was necessary. The UV/O-3 pretreatment prior to UF was found to be an efficient method of the membrane fouling alleviation. During UF, the turbidity of wastewater was reduced below 0.3 NTU. To remove the inorganic salts, the UF permeate was further treated during NF. The NF permeate exhibited very low conductivity (27-75 mu S/cm) and contained only small amounts of Ca2+ and Mg2+; thus ,it could be reused at any stage of the laundry process.
机译:应用三步系统将混合生物处理,高级UV / O-3氧化与原位生成的O-3进行氧化以及膜分离(超滤(UF)和纳滤(NF))相结合的可能性,以处理和再利用废水从工业洗衣店介绍。通过应用混合移动床生物膜反应器(HMBBR),总有机碳浓度降低了约90%。但是,由于HMBBR废水仍包含有机污染物以及高浓度的无机离子,并显示出明显的浊度(8.2 NTU),因此在将其重新用于衣物之前,必须对其进行进一步处理。发现在超滤之前进行UV / O-3预处理是减轻膜结垢的有效方法。在超滤期间,废水的浊度降低到0.3 NTU以下。为了去除无机盐,在NF过程中进一步处理了UF渗透液。 NF渗透物​​的电导率非常低(27-75μS / cm),并且仅包含少量的Ca2 +和Mg2 +。因此,它可以在洗衣过程的任何阶段重复使用。

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