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Hybrid System Coupling Moving Bed Bioreactor with UV/O3 Oxidation and Membrane Separation Units for Treatment of Industrial Laundry Wastewater

机译:带有UV / O3氧化和膜分离装置的混合系统耦合移动床生物反应器处理工业洗衣废水

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摘要

This paper describes the investigations on the possibilities of treatment of wastewater generated in an industrial laundry with application of a combined biological-photooxidation- membrane system aimed at water recycle and reuse. The two treatment schemes were compared: 1) scheme A consisting of a treatment in a moving bed biological reactor (MBBR) followed by microfiltration (MF) and nanofiltration (NF), and 2) scheme B comprising MBBR followed by oxidation by photolysis enhanced with in situ generated O (UV/O ) after which MF and NF were applied. The removal efficiency in MBBR reached 95–97% for the biochemical oxygen demand; 90–93% for the chemical oxygen demand and 89–99% for an anionic and a nonionic surfactants. The application of UV/O system allowed to decrease the content of the total organic carbon by 68% after 36 h of operation with a mineralization rate of 0.36 mg/L·h. Due to UV/O pretreatment, a significant mitigation of membrane fouling in the case of both MF and NF processes was achieved. The MF permeate flux in the system B was over two times higher compared to that in the system A. Based on the obtained results it was concluded that the laundry wastewater pretreated in the MBBR-UV/O -MF-NF system could be recycled to any stage of the laundry process.
机译:本文介绍了针对结合了水循环和再利用的生物光氧化膜联合系统对工业衣物产生的废水进行处理的可能性的研究。比较了两种处理方案:1)方案A,包括在移动床生物反应器(MBBR)中进行的处理,然后进行微滤(MF)和纳滤(NF),以及2)方案B,包括MBBR,然后通过光催化氧化进行氧化处理原位生成的O(UV / O),然后应用MF和NF。对于生化需氧量,MBBR的去除效率达到95-97%;化学需氧量的90–93%,阴离子和非离子表面活性剂的89–99%。 UV / O系统的应用使操作36小时后的总有机碳含量降低了68%,矿化速率为0.36 mg / L·h。由于进行了UV / O预处理,在MF和NF工艺中,都可以显着减轻膜污染。系统B中的MF渗透通量是系统A中的MF渗透通量的两倍以上。基于所获得的结果,得出的结论是,在MBBR-UV / O-MF-NF系统中预处理的洗衣废水可以再循环至洗衣过程的任何阶段。

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