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采用纳滤-粉末活性炭复合系统对 AO-MBR 处理后的焦化废水进行深度处理。

Further treatment of coking wastewater treated in AO-MBR by the nanofiltration-powder activated carbon hybrid system.

机构信息

Faculty of Engineering, Environmental Engineering, Gebze Technical University, Kocaeli, Türkiye E-mail:

Faculty of Engineering, Environmental Engineering, Gebze Technical University, Kocaeli, Türkiye.

出版信息

Water Sci Technol. 2024 Apr;89(7):1831-1845. doi: 10.2166/wst.2024.091. Epub 2024 Mar 20.

Abstract

In this study, further treatment of coking wastewater treated in anoxic-oxic-membrane bioreactor (AO-MBR) was investigated to meet the standards of the ministry by means of nanofiltration (NF) (with two different membranes and different pressures), microfiltration -powder activated carbon (MF-PAC) hybrid system and NF-PAC (with two different membranes and five different PAC concentrations) hybrid system. In addition to the parameters determined by the ministry, other parameters such as ammonium, thiocyanate (SCN), hydrogen cyanide (HCN), dissolved organic carbon (DOC), dissolved inorganic carbon (DIC), color were also examined to evaluate the flux performance and treatment efficiency of the hybrid processes. According to the results, chemical oxygen demand (COD) in the NF process, COD and total cyanide (T-CN) in the MF-PAC process could not meet the discharge standards. As for the NF-PAC hybrid system, XN45 membrane met the discharge standards in all parameters (COD = 96±1.88 mg/L, T-CN =<0,02 mg/L, phenol =<0.05 mg/L), with a recovery rate of 78% at 0.5 g/L PAC concentration.

摘要

本研究进一步处理缺氧-好氧-膜生物反应器(AO-MBR)处理后的焦化废水,通过纳滤(NF)(两种不同的膜和不同的压力)、微滤-粉末活性炭(MF-PAC)混合系统和 NF-PAC(两种不同的膜和五种不同的 PAC 浓度)混合系统,达到部委标准。除了部委确定的参数外,还考察了铵、硫氰酸盐(SCN)、氰化氢(HCN)、溶解性有机碳(DOC)、溶解性无机碳(DIC)、颜色等其他参数,以评估混合工艺的通量性能和处理效率。结果表明,NF 工艺的化学需氧量(COD)、MF-PAC 工艺的 COD 和总氰化物(T-CN)不能达到排放标准。对于 NF-PAC 混合系统,XN45 膜在所有参数(COD=96±1.88mg/L,T-CN<0.02mg/L,苯酚<0.05mg/L)中均达到排放标准,PAC 浓度为 0.5g/L 时回收率为 78%。

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