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Pilot-scale anaerobic/anoxic/oxic/oxic biofilm process treating coking wastewater

机译:中规模厌氧/缺氧/氧化/氧化生物膜工艺处理焦化废水

摘要

BACKGROUND: Biological treatment efficiency of coking wastewater is rather poor, especially for chemical oxygen demand (COD) and ammonia-nitrogen (NH4+-N) removal due to its complex composition and high toxicity. RESULTS: A pilot-scale anaerobic/anoxic/oxic/oxic (A(2)/O-2) biofilm system has been developed to treat coking wastewater, focusing attention on the COD and NH4+-N removal efficiencies. Operational results over 239 days showed that hydraulic retention time (HRT) of the system had a great impact on simultaneous removals of COD and NH4+-N. At HRT of 116 h, total removal efficiencies of COD and NH4+-N were 92.3% and 97.8%, respectively, reaching the First Grade discharge standard for coking wastewater in China. Adequate HRT, anoxic removal of refractory organics and two-step aerobic bioreactors were considered to be effective measures to obtain satisfactory coking effluent quality using the A(2)/O-2 biofilm system. The correlation between removal characteristics of pollutants and spatial distributions of biomass along the height of upflow bioreactors was also revealed. CONCLUSION: The study suggests that it is feasible to apply the A(2)/O-2 biofilm process for coking wastewater treatment, achieving desirable effluent quality and steady process performance. (c) 2012 Society of Chemical Industry
机译:背景:焦化废水的生物处理效率相当低,特别是对于化学需氧量(COD)和氨氮(NH4 + -N)去除而言,由于其复杂的组成和高毒性。结果:已开发出中试规模的厌氧/缺氧/有氧/有氧(A(2)/ O-2)生物膜系统来处理焦化废水,重点是COD和NH4 + -N的去除效率。 239天的运行结果表明,系统的水力停留时间(HRT)对同时去除COD和NH4 + -N产生了很大影响。在116 h的HRT下,COD和NH4 + -N的总去除效率分别为92.3%和97.8%,达到了中国焦化废水的一级排放标准。充分的HRT,缺氧性有机物的缺氧去除和两步好氧生物反应器被认为是使用A(2)/ O-2生物膜系统获得令人满意的焦化废水质量的有效措施。还揭示了污染物去除特性与生物质空间分布在上流式生物反应器高度上的相关性。结论:该研究表明将A(2)/ O-2生物膜工艺用于焦化废水处理是可行的,可达到理想的出水质量和稳定的工艺性能。 (c)2012年化学工业学会

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