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Effect of magnetic powder on denitrification using the sludge alkaline fermentation liquid as a carbon source

机译:磁粉对使用污泥碱性发酵液作为碳源的脱氮的影响

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This work evaluates the impact of the different concentrations of Fe3O4 on nitrate removal and organic matters utilization in the sequencing batch reactors (SBRs) using the sludge alkaline digestion supernatant as external sludge carbon source. Results indicated that the optimal concentration of Fe3O4 was 1 g/L for enhancing denitrification with NO3--N removal efficiency of 93.13% (up to a 11.93% increase) and without NO2--N accumulation after 18 days. The changes of soluble chemical oxygen demand (SCOD), protein, and carbohydrate during denitrification process were analyzed to gauge the utilization of sludge fermentation products by denitrifiers. The SCOD was consumed for organisms involved in NO3--N removal and the Fe3O4 could promote the utilization of carbohydrate better than protein by denitrifiers during denitrification process. Denitrification rate (V-DN) and the nitrate-to-nitrite transformation ratio (NTR), as the kinetics parameters, were also investigated in different concentrations of Fe3O4.
机译:这种作品评估了使用污泥碱性消化上清液作为外部污泥碳源的污泥碱性反应器(SBRS)对硝酸盐去除和有机物质利用的不同浓度Fe3O4的影响。结果表明,Fe3O4的最佳浓度为1g / l,用于增强脱氮,NO 3 - N除去效率为93.13%(升高至11.93%),18天后没有NO2 - N累积。分析了脱硝过程中可溶性化学需氧量(SCOD),蛋白质和碳水化合物的变化,以衡量脱氮剂利用污泥发酵产物。将SCOD用于涉及NO3 - N的生物消耗,FE3O4可以在反硝化过程中促进比蛋白质的碳水化合物更好地利用蛋白质。在不同浓度的Fe3O4中还研究了脱氮率(V-DN)和硝酸盐 - 亚硝酸盐转化比(NTR)作为动力学参数。

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