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首页> 外文期刊>Journal of Hazardous Materials >AC/O_3-BAC processes for removing refractory and hazardous pollutants in raw water
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AC/O_3-BAC processes for removing refractory and hazardous pollutants in raw water

机译:AC / O_3-BAC工艺去除原水中的难处理和有害污染物

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摘要

Granular activated carbon (AC)/O_3-biological activated carbon (BAC) process was employed to treat raw water and compared to O_3-BAC process in its optimum parameters (3 mg/L ozone dosage with 15 min oxidation time and 15 min empty bed contact time in BAC). The results showed that the presence of AC improved ozone utilization and biodegradability of the effluent. For dissolved organic carbon (DOC) removal, AC/O_3-BAC was more efficient than O_3-BAC and its synergetic effect could be noticed. It was showed that small molecules with molecular weight (MW) < 3 kDa predominated in the raw water accounting for more than 56% DOC, and their amount increased after oxidation, accounting for more than 64% DOC. Except for organic pollutants with MW > 10 kDa, those of other MW range were decomposed better by AC/O_3 process than by O_3 process alone. GC/MS analysis showed that AC/O_3-BAC process was effective in removing phthalate esters (PAEs) and persistent organic pollutants (POPs). PAEs' removal ratio reached more than 93% and reduced with the increase of the length of the alkyl side chains and the alkyl branch chains. POPs-polybromobiphenyls' removal reached more than 94% except for 2,2',4,5',6-pentabromophenyl and decreased with the substitutional bromines increase except for 2,2',5,5'-tetrabromobiphenyl, which could be completely removed.
机译:采用颗粒活性炭(AC)/ O_3-生物活性炭(BAC)工艺处理原水,并与O_3-BAC工艺的最佳参数进行比较(3 mg / L臭氧剂量,氧化时间为15分钟,空床为15分钟)在BAC中的联系时间)。结果表明,交流电的存在改善了废水的臭氧利用率和生物降解性。对于去除溶解性有机碳(DOC),AC / O_3-BAC比O_3-BAC更有效,并且可以注意到其协同作用。结果表明,在原水中,分子量(MW)<3 kDa的小分子占主导地位,DOC含量超过56%,氧化后其含量增加,DOC含量超过64%。除MW> 10 kDa的有机污染物外,其他MW范围的污染物通过AC / O_3处理的分解效果均好于仅通过O_3处理的分解效果。 GC / MS分析表明,AC / O_3-BAC工艺可有效去除邻苯二甲酸酯(PAE)和持久性有机污染物(POPs)。 PAE的去除率达到93%以上,并随着烷基侧链和烷基支链长度的增加而降低。除2,2',4,5',6-五溴代苯基外,持久性有机污染物-多溴代二苯的去除率达到94%以上,除2,2',5,5'-四溴代二苯外,其随取代溴的增加而降低,这可能是完全的删除。

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