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Effects of DO on N_2O emission during biological nitrogen removal using aerobic granular sludge via shortcut simultaneous nitrification and denitrification

机译:DO对短时同步硝化反硝化需氧颗粒污泥生物除氮过程中N_2O排放的影响

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摘要

Dissolved oxygen (DO) is an important factor influencing biological nitrogen removal. This study investigated the effects of different DO concentrations (4, 2, 1 mg/L) on nitrous oxide (N2O) production and nitrogen removal via shortcut simultaneous nitrification and denitrification by aerobic granular sludge (SNDAG) using a sequencing bath reactor. The results showed that N2O production was highest (127.6 mg/m(3)) at a DO concentration of 2 mg/L; this was 24.17 and 2.90 times the production at DO concentrations of 4 and 12 mg/L, respectively. The removal efficiency of total nitrogen also was the highest (61.68%) when the DO concentration was 2 mg/L, compared to 35.22% and 50.65% at DO concentrations of 4 and 1 mg/L, respectively. The efficiency of the SNDAG process reached 53.86% at a DO concentration of 2 mg/L, which was 1.33 and 1.67 times the efficiencies at DO concentrations of 4 and 1 mg/L, respectively. Therefore, reducing the DO concentration benefited the SNDAG process, but increased the emission of N2O.[GRAPHICS].
机译:溶解氧(DO)是影响生物脱氮的重要因素。这项研究调查了使用顺序浴反应器,通过需氧颗粒污泥(SNDAG)的同时同步硝化和反硝化的快速同时硝化和反硝化作用,研究了不同DO浓度(4、2、1 mg / L)对一氧化二氮(N2O)产生和脱氮的影响。结果表明,在DO浓度为2 mg / L时,N2O产量最高(127.6 mg / m(3));在DO浓度为4和12 mg / L时,这分别是产量的24.17和2.90倍。当溶解氧浓度为2 mg / L时,总氮的去除效率也最高(61.68%),而溶解氧浓度为4和1 mg / L时,总氮的去除效率分别为35.22%和50.65%。当溶解氧浓度为2 mg / L时,SNDAG工艺的效率达到53.86%,分别是溶解氧浓度为4和1 mg / L时的效率的1.33和1.67倍。因此,降低DO浓度有益于SNDAG工艺,但增加了N2O的排放。[GRAPHICS]。

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