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Comparison of bioaugmented EGSB and GAC–FBB reactors and their combination with aerobic SBR for the abatement of chlorophenols

机译:生物强化EGsB和GaC - FBB反应器的比较及其与好氧sBR的结合对氯酚的抑制作用

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摘要

The biological abatement of 2,4,6-trichlorophenol (246TCP) and its chlorinated degradation byproducts using anaerobic and aerobic biological reactors coupled in series has been studied. The performance of an anaerobic fluidized bed biofilm reactor (FBBR) and expanded granular sludge bed (EGSB) reactors bioaugmented with Desulfitobacterium strains was compared within a wide range of 246TCP loading rates. The bioaugmentation of an EGSB reactor with Desulfitobacterium strains enhanced the chlorophenols removal efficiency and the stability against high toxic shocks. The FBBR showed an even higher stability, but also improved the dechlorination efficiency and required a shorter start-up period than the bioaugmented EGSB reactor. Thus, it was selected as the preferred anaerobic system. The subsequent treatment of the effluents from the anaerobic reactors in an aerobic sequencing batch reactor allowed complete dechlorination and improved mineralization up to 85% TOC reduction with a substantial abatement of the ecotoxicity, which was diminished in more than 80%
机译:研究了串联连接的厌氧和好氧生物反应器对2,4,6-三氯苯酚(246TCP)的生物减除及其氯化降解副产物的影响。厌氧流化床生物膜反应器(FBBR)和生物强化了脱硫细菌菌株的膨胀颗粒污泥床(EGSB)反应器的性能在246TCP装载速率的宽范围内进行了比较。脱硫细菌菌株对EGSB反应器的生物强化提高了氯酚的去除效率和抗高毒性冲击的稳定性。与生物增强的EGSB反应器相比,FBBR表现出更高的稳定性,但也提高了脱氯效率,并且需要更短的启动时间。因此,它被选为首选的厌氧系统。在好氧顺序分批反应器中对厌氧反应器的废水进行后续处理,可以实现完全脱氯,并改善了矿化度,最大降低了85%的总有机碳(TOC),同时大大降低了生态毒性,减少了80%以上的生态毒性

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