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Acid Fermentation Process Combined with Post Denitrification for the Treatment of Primary Sludge and Wastewater with High Strength Nitrate

机译:酸发酵联合后反硝化处理高浓度硝酸盐处理原污泥和废水

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In this study, an anaerobic baffled reactor (ABR), combined with a post denitrification process, was applied to treat primary sludge from a municipal wastewater treatment plant and wastewater with a high concentration of nitrate. The production of volatile fatty acids (VFAs) was maximized with a short hydraulic retention time in the acid fermentation of the ABR process, and then the produced VFAs were supplied as an external carbon source for the post denitrification process. The laboratory scale experiment was operated for 160 days to evaluate the VFAs’ production rate, sludge reduction in the ABR type-acid fermentation process, and the specific denitrification rate of the post denitrification process. As results, the overall removal rate of total chemical oxygen demand (TCOD), total suspended solids (TSS), and total nitrogen (TN) were found to be 97%, 92%, 73%, respectively, when considering the influent into ABR type-acid fermentation and effluent from post denitrification. We observed the specific VFAs production rate of 0.074 gVFAs/gVSS/day for the ABR type-acid fermentation, and an average specific denitrification rate of 0.166 gNO 3 ? -N/gVSS/day for the post denitrification. Consequently, we observed that a high production of VFAs from a primary sludge, using application of the ABR type acid fermentation process and the produced VFAs were then successfully utilized as an external carbon source for the post denitrification process, with a high removal rate of nitrogen.
机译:在这项研究中,厌氧折流板反应器(ABR)与反硝化后工艺相结合,用于处理市政污水处理厂的初沉污泥和高硝酸盐废水。在ABR工艺的酸发酵过程中,挥发性脂肪酸(VFA)的生成在较短的水力停留时间内得以最大化,然后将生成的VFA作为外部碳源提供给反硝化后的流程。实验室规模的实验进行了160天,以评估VFA的生产率,ABR型酸发酵过程中的污泥减少以及反硝化过程后的具体反硝化率。结果,当考虑流入ABR的进水时,总化学需氧量(TCOD),总悬浮固体(TSS)和总氮(TN)的总去除率分别为97%,92%,73%。型酸发酵和反硝化后的废水。我们观察到ABR型酸发酵的VFA比生产率为0.074 gVFA / gVSS /天,平均比反硝化率为0.166 gNO 3?。 -N / gVSS /天用于反硝化后。因此,我们观察到,通过使用ABR型酸发酵工艺,可以从初级污泥中大量生产VFA,然后将所生产的VFA成功地用作脱氮后工艺的外部碳源,并具有很高的氮去除率。 。

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