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Advanced treatment of dyeing wastewater towards reuse by the combined Fenton oxidation and membrane bioreactor process

机译:Fenton氧化与膜生物反应器相结合的工艺对印染废水进行深度处理以便再利用。

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摘要

The performance of combined Fenton oxidation and membrane bioreactor (MBR) process for the advanced treatment of an effluent from an integrated dyeing wastewater treatment plant was evaluated. The experimental results revealed that under the optimum Fenton oxidation conditions (initial pH 5, H_2O_2 dosage 17 mmol/L, and Fe~(2+) 1.7 mmol/L) the average total organic carbon (TOC) and color removal ratios were 39.3% and 69.5% after 35 min of reaction, respectively. Results from Zahn-Wallens Test also represented that Fenton process was effective to enhance the biodegradability of the test wastewater. As for the further purification of MBR process, TOC removal capacity was examined at different hydraulic retention times (HRT) of 10, 18 and 25 hr. Under the optimum HRT of 18 hr, the average TOC concentration and color of the final MBR effluent were 16.8 mg/L and 2 dilution time, respectively. The sludge yield coefficient was 0.13 g MLSS/g TOC and TOC degradation rate was 0.078 kg TOC/(m~3·day). The final effluent of MBR can meet the reuse criteria of urban recycling water - water quality standard for miscellaneous water consumption GBT18920-2002.
机译:评估了Fenton氧化膜生物反应器(MBR)组合工艺对综合印染废水处理厂废水进行深度处理的性能。实验结果表明,在最佳的Fenton氧化条件下(初始pH 5,H_2O_2用量17 mmol / L,Fe〜(2+)1.7 mmol / L),平均总有机碳(TOC)和脱色率为39.3%反应35分钟后分别为69.5%和69.5%。 Zahn-Wallens测试的结果还表明,芬顿工艺可有效提高测试废水的生物降解能力。至于MBR工艺的进一步纯化,在10、18和25小时的不同水力停留时间(HRT)下检查了TOC去除能力。在18小时的最佳HRT下,最终MBR流出物的平均TOC浓度和颜色分别为16.8 mg / L和2倍稀释时间。污泥产率系数为0.13 g MLSS / g TOC,TOC降解率为0.078 kg TOC /(m〜3·day)。 MBR的最终出水可以满足城市循环水的再利用标准-杂项用水的水质标准GBT18920-2002。

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