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Coking wastewater treatment for industrial reuse purpose: Combining biological processes with ultrafiltration, nanofiltration and reverse osmosis

机译:用于工业回用的焦化废水处理:将生物过程与超滤,纳滤和反渗透相结合

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A full-scale plant using anaerobic, anoxic and oxic processes (A_1/A_2/O), along with a pilot-scale membrane bioreactor (MBR), nanofiltration (NF) and reverse osmosis (RO) integrated system developed by Shanghai Baosteel Chemical Co. Ltd., was investigated to treat coking wastewater for industrial reuse over a period of one year. The removals reached 82.5% (COD), 89.6% (BOD), 99.8% (ammonium nitrogen), 99.9% (phenol), 44.6% (total cyanide (T-CN)), 99.7% (thiocyanide (SCN~-)) and 8.9% (fluoride), during the A_1/A_2/O biological treatment stage, and all parameters were further reduced by over 96.0%, except for fluoride (86.4%), in the final discharge effluent from the currently operating plant. The pilot-scale MBR process reduced the turbidity to less than 0.65 NTU, and most of the toxic organic compounds were degraded or intercepted by the A_1/A_2/O followed MBR processes. In addition, parameters including COD, T-CN, total nitrogen, fluoride, chloride ion, hardness and conductivity were significantly reduced by the NF-RO system to a level suitable for industrial reuse, with a total water production ratio of 70.7%. However, the concentrates from the NF and RO units were highly polluted and should be disposed of properly or further treated before being discharged.
机译:上海宝钢化工有限公司开发的具有厌氧,缺氧和有氧工艺(A_1 / A_2 / O)的规模化工厂,以及中试规模的膜生物反应器(MBR),纳滤(NF)和反渗透(RO)集成系统公司经过了一年的处理,以处理焦化废水以进行工业回用。去除率分别达到82.5%(COD),89.6%(BOD),99.8%(铵氮),99.9%(苯酚),44.6%(总氰化物(T-CN)),99.7%(硫氰化物(SCN〜-))在A_1 / A_2 / O生物处理阶段,其总含氟量为8.9%(氟化物),并且在当前运行工厂的最终排放废水中,除氟化物(86.4%)外,所有参数进一步降低了96.0%以上。中试规模的MBR工艺将浊度降低至小于0.65 NTU,并且大多数有毒有机化合物被MB_1工艺的A_1 / A_2 / O降解或拦截。此外,NF-RO系统将COD,T-CN,总氮,氟,氯离子,硬度和电导率等参数显着降低至适合工业回用的水平,总产水率为70.7%。但是,来自NF和RO装置的精矿被高度污染,应在排放前进行适当处置或进一步处理。

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