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Effects of external recirculation on a two-stage mainstream anaerobic-anammox treatment system

机译:外部再循环对两阶段主流厌氧厌氧菌处理系统的影响

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Nitritation-anammox treatment can be a potentially energy- and resource-efficient technology for treating mainstream wastewater. However, the issue of nitrate residue from anammox treatment remains to be addressed. Herein, external recirculation of the anammox effluent to a hybrid anaerobic reactor (HAR), which was also to provide a continuous flow with low COD/N for the nitritation-anammox reactor, was employed to decrease the residue compounds. The recirculation ratio of 50% was observed to be the optimal to achieve the best overall performance with potential savings in energy demand. Specifically, in the operation scenario of R = 50%, the highest COD removal of similar to 90% by the I IAR was achieved. Meanwhile, the lowest COD/NH4+-N ratio of similar to 2.0 in the HAR effluent ensured the lowest observed NO3--N/NH4+-N ratio of similar to 14% in the nitritation-anammox reactor. These results have demonstrated the feasibility of applying external recirculation for nitrate residue removal via denitrification in the anaerobic pretreatment stage. (C) 2018 water Environment Federation
机译:亚硝化氨氧化处理可能是一种处理主流废水的潜在能源和资源高效技术。然而,来自厌氧氨氧化处理的硝酸盐残留物的问题仍有待解决。在此,采用厌氧氨水流出物到混合厌氧反应器(HAR)的外部再循环,这也为硝化-厌氧氨化反应器提供了连续的低COD / N流量,以减少残留化合物。观察到50%的再循环率是实现最佳总体性能的最佳选择,同时可以节省能源需求。具体而言,在R = 50%的操作方案中,IAR达到的最高COD去除率接近90%。同时,在HAR废水中,最低的COD / NH4 + -N比值约为2.0,这确保了在硝化-厌氧反应器中观察到的最低的NO3--N / NH4 + -N比值约为14%。这些结果证明了在厌氧预处理阶段应用外部再循环通过反硝化去除硝酸盐残留物的可行性。 (C)2018水环境联合会

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