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The rate of denitrification using hydrodynamically disintegrated excess sludge as an organic carbon source

机译:使用流体动力学崩解的过量污泥作为有机碳源的脱氮速率

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This study investigates the potential of hydrodynamically disintegrated excess activated sludge when used as a supplementary carbon source for denitrification. Two objectives constituted this study: (i) to analyse the denitrification rate by using excess sludge subjected to hydrodynamic disintegration (HD), performed at different energy densities, as an organic carbon source, and (ii) to analyse the impact of hydrolysis of disintegrated sludge on the denitrification rate. Nitrate reduction tests were conducted to assess the denitrification rate for the following sources of organic carbon: thickened excess sludge disintegrated at three levels of energy density (70, 140 and 210 kJ/L), acetic acid solution and municipal wastewater after mechanical treatment. It was found that the HD of excess sludge conducted at different levels of energy density led to dissolved organic compounds characterised by various properties as donors of H+ in the denitrification process. The susceptibility of disintegrated sludge to anaerobic hydrolysis decreased along with the increasing energy density. The obtained organic carbon contributed to a lower increase in the denitrification rate in comparison to that when disintegrated sludge not subjected to hydrolysis was applied.
机译:本研究调查用作辅助碳源时流体动力学崩解过量活性污泥的电位。构成了本研究的两个目标:(i)通过使用在不同能量密度的水动力崩解(HD)进行的多余污泥,作为有机碳源和(ii)来分析反硝化率,以分析水解崩解的影响污泥脱硝率。硝酸盐还原试验以评估用于有机碳的以下来源的脱氮率:增稠剩余污泥崩解在三个水平的能量密度(70,140和210千焦/ L),乙酸溶液和市政污水的机械处理之后。结果发现,在不同水平的能量密度下进行的过量污泥的HD导致溶解的有机化合物,其特征在于反硝化过程中的H +供体。崩解污泥与厌氧水解的易感性随着能量密度的增加而降低。所获得的有机碳导致脱氮率的较低增加,因为当不受不受水解的崩解污泥时脱硝率。

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