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Textile effluent treatment in a UASB reactor followed by submerged aerated biofiltration

机译:在UASB反应器中处理纺织品废水,然后进行曝气生物滤池

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An upflow anaerobic sludge bed (UASB)-submerged aerated biofilter (SAB) system that treats effluents from a jeans factory was evaluated. The 210-day operational period was divided into three phases (PI, PII and PIII), each with a different hydraulic retention time (HRT in h) and organic loading rate (OLR in kg COD/m3.d). In PI, the best performance was achieved using the UASB (HRT 24, OLR 1.3) with COD and color removal efficiencies of 59 and 64%, respectively; the corresponding values were 77 and 86% for the final effluent. In PII, the efficiencies were 50 and 55% using the UASB (HRT 16, OLR 1.2), respectively, and 69 and 81% for the final system effluent, respectively. In PIII, the UASB (HRT 12 and ORL 3.2) showed the poorest performance; the efficiencies decreased to 48 and 50%, respectively. The same phenomenon occurred in the system with corresponding efficiencies decreasing to 69 and 61%. Throughout the experiment, the system removal efficiencies were between 57 and 88% for nitrogen and between 14 and 63% for sulfate. The final effluent showed relatively non-toxicity or moderate toxicity using Daphnia magna as an indicator. Therefore, the overall results showed that the use of a sequential anaerobic-aerobic system is promising for treatment of textile industrial wastewater.
机译:评估了处理牛仔裤工厂废水的上流厌氧污泥床(UASB)-潜水式曝气生物滤池(SAB)系统。 210天的运营期分为三个阶段(PI,PII和PIII),每个阶段具有不同的水力停留时间(HRT,以h为单位)和有机负荷率(OLR,以kg COD / m3.d为单位)。在PI中,使用UASB(HRT 24,OLR 1.3)可获得最佳性能,其COD和脱色效率分别为59%和64%。最终出水的相应值分别为77%和86%。在PII中,使用UASB(HRT 16,OLR 1.2)的效率分别为50%和55%,最终系统废水的效率分别为69%和81%。在PIII中,UASB(HRT 12和ORL 3.2)表现最差;效率分别降低到48%和50%。系统中发生了相同的现象,相应的效率分别降低到69%和61%。在整个实验中,氮的系统去除效率介于57%至88%之间,硫酸盐的去除效率介于14%至63%之间。使用大型蚤(Daphnia magna)作为指示剂,最终废水显示出相对无毒或中等毒性。因此,总体结果表明,顺序厌氧-好氧系统的使用有望用于处理纺织工业废水。

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