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Treatment of coke-plant wastewater by biofilm systems for removal of organic compounds and nitrogen

机译:通过生物膜系统处理焦炭废水以去除有机化合物和氮

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摘要

Coke-plant wastewater was treated by an anaerobic-anoxic-aerobic (A_1―A_2―O) biofilm system and an anoxic-aerobic (A/O) biofilm system, respectively. At same or similar levels of hydraulic retention time (HRT), the two systems had almost identical chemical oxygen demand (COD) and NH_3 removals, but a different organic-N removal. Set-up of an acidogenic stage benefited for the removal of organic-N and the A_1―A_2―O system was more useful for total nitrogen removal than the A―O system. HRT did not have a substantial effect on the COD and NH_3―N removal efficiencies, but considerably influenced the organic-N removal and distribution of oxidized nitrogen in the final effluent. The GC/MS analysis demonstrated that some refractory compounds were decomposed at the acidogenic stage and resulted in the production of some intermediates, which were more readily degraded in the subsequent aerobic stage. Hence, the A_1―A_2―O system had better effluent quality than the A―O system in terms of effluent composition.
机译:焦化废水分别通过厌氧-好氧-好氧(A_1-A_2-O)生物膜系统和缺氧-好氧(A / O)生物膜系统进行处理。在相同或相似的水力停留时间(HRT)水平下,两个系统的化学需氧量(COD)和NH_3去除率几乎相同,但有机氮的去除率却不同。产酸阶段的建立有利于有机N的去除,而A_1―A_2―O系统比A―O系统对总氮的去除更有用。 HRT对COD和NH_3-N的去除效率没有实质性影响,但对最终废水中有机氮的去除和氧化氮的分布有很大影响。 GC / MS分析表明,某些耐火化合物在产酸阶段分解,并导致产生一些中间体,这些中间体在随后的好氧阶段更容易降解。因此,就废水成分而言,A_1―A_2―O系统的出水水质优于A―O系统。

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