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Combined Application of UV Photolysis and Ozonation with Biological Aerating Filter in Tertiary Wastewater Treatment

机译:紫外光解臭氧处理与生物曝气滤池联合处理三次废水

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To enhance the biodegradability of residual organic pollutants in secondary effluent of wastewater treatment plants, UV photolysis and ozonation were used in combination as pretreatment before a biological aerating filter (BAF). The results indicated that UV photolysis could not remove much COD (chemical oxygen demand), and the performance of ozonation was better than the former. With UV photolysis combined with ozonation (UV/O3), COD removal was much higher than the sum of that with UV photolysis and ozonation alone, which indicated that UV photolysis could efficiently promote COD removal during ozonation. This pretreatment also improved molecular weight distribution (MWD) and biodegradability greatly. Proportion of organic compounds with molecular weight (MW) <3 kDalton was increased from 51.9% to 85.9%. COD removal rates with BAF and O3/BAF were only about 25% and 38%, respectively. When UV/O3oxidation was combined with BAF, the average COD removal rate reached above 61%, which was about 2.5 times of that with BAF alone. With influent COD ranging from 65 to 84 mg/L, the effluent COD was stably in the scope of 23–31 mg/L. The combination of UV/O3oxidation with BAF was quite efficient in organic pollutants removal for tertiary wastewater treatment.
机译:为了增强废水处理厂二次废水中残留有机污染物的生物降解能力,在生物曝气滤池(BAF)之前将UV光解和臭氧化处理结合使用作为预处理。结果表明,紫外线光解不能去除大量的COD(化学需氧量),臭氧化性能优于前者。紫外光分解与臭氧化(UV / O3)结合使用时,COD的去除量远高于单独进行紫外光分解和臭氧化处理的总和,这表明紫外线光解可以有效促进臭氧化过程中COD的去除。该预处理还大大改善了分子量分布(MWD)和生物降解性。分子量(MW)<3 kDalton的有机化合物的比例从51.9%增加到85.9%。 BAF和O3 / BAF的COD去除率分别仅为约25%和38%。当UV / O3氧化与BAF结合使用时,平均COD去除率达到61%以上,约为BAF单独去除率的2.5倍。进水COD范围从65到84 mg / L,出水COD稳定在23-31 mg / L范围内。 UV / O3氧化与BAF的结合对于第三级废水处理中的有机污染物去除非常有效。

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