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Advanced treatment of petrochemical wastewater by combined ozonation and biological aerated filter

机译:臭氧化合物和生物曝气过滤器的先进治疗石化废水

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摘要

The secondary effluent from a petrochemical wastewater treatment plant was treated by biological aerated filter (BAF) before and after ozonation, namely BAF1 and BAF2, respectively. The results showed that BAF2 fed with the ozonized secondary effluent exhibited a high efficiency in degrading organic pollutants. The removal efficiency of COD and NH~(4)-N was 6.0?±?3.2 and 48.2~18.6% for BAF1 and 12.5?±?5.8 and 62.1~40.9% for BAF2, respectively, during the whole operation. The integration system of ozonation and BAF could tolerate a higher organic loading rate. When HRT decreased from 4 to 1?h, COD removal efficiency decreased from 12 to 4% for the BAF1 system, but it kept almost unchanged at high levels of 27–32% for the ozonation-BAF2 system, with around 20% removal by ozonation. The biomass in BAF2 exhibited a higher activity of protease, DHA, and SOUR than that in BAF1. The organic pollutants in influent and effluent of BAF were mainly ester compounds, which were difficult to biodegrade by BAF. The predominant genera in BAF1 were Gemmatimonadaceae uncultured , Thauera , and Thiobacillus , while the dominant genera in BAF2 were Nitrospira , Gemmatimonadaceae uncultured , and Flexibacter , respectively. Overall, BAF2 performed better than BAF1 in organic pollutant removal and microbial activity. The ozonation process was vital for BAF to treat petrochemical secondary effluent.
机译:石化废水处理厂的二级流出物通过生物曝气过滤器(BAF)在臭氧,即BAF1和BAF2之前和之后进行治疗。结果表明,与臭氧化的二级流出物喂养的BAF2在有机污染物的降解中表现出高效率。 COD和NH〜(4)-N的去除效率分别为6.0?±3.2和48.2〜18.6%,分别在整个操作过程中为BAF2的5.8和62.1〜40.9%。臭氧化合物和BAF的整合系统可以耐受较高的有机加载速率。当HRT从4到1℃下降时,COD去除效率为BAF1系统的12%至4%,但臭氧化合物-BAF2系统的高水平高水平几乎保持不变,大约20%的拆除ozonation。 BAF2中的生物质表现出比BAF1中的蛋白酶,DHA和酸的更高活性。 BAF的流水和流出物中的有机污染物主要是酯化合物,这难以通过BAF生物降解。 BAF1中的主要属性是Gemmatimonadaceae未培养的,Thauera和Thiobacillus,而BAF2中的占优势属性分别是Nitrospira,Gemmatimonadaceae未培养和柔韧性。总体而言,BAF2在有机污染物去除和微生物活性中表现优于BAF1。臭氧化方法对BAF治疗石化二级污水至关重要。

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