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Nitrogen removal performance of municipal reverse osmosis concentrate with low C/N ratio by membrane-aerated biofilm reactor

机译:膜曝气生物膜反应器对低碳氮比市政反渗透浓缩液的脱氮性能

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A membrane-aerated biofilm reactor was employed to investigate the nitrogen removal of one typical municipal reverse osmosis(RO) concentrate with a high total nitrogen (TN) concentration and a low C/N ratio. The effects of operational conditions, including the aeration pressure, the hydraulic retention time and the C/N ratio, on the systematic performance were evaluated. The nitrogen removal mechanism was evaluated by monitoring the effluent concentrations of nitrogen contents. Furthermore, the microbial tolerance with elevated salinity was identified. The results indicated that the optimal TN removal efficiency of 79.2% was achieved of the aeration pressure of 0.02 MPa, hydraulic retention time of 24 h, and the C/N ratio of 5.8, respectively. It is essential to supplement the carbon source for the targeted RO concentrate to promote the denitrification process. The inhibitory effect of salinity on denitrifying bacteria and nitrite oxidizing bacteria was significant, revealing the limited TN removal capacity of the conditions in this work. The TN removal efficiency remained more than 70% with the addition of salt (NaCl) amount below 20 g/L. This work preliminarily demonstrated the MABR feasibility for the nitrogen removal of municipal RO concentrate with low C/N ratio and provided technical guidance for further scale-up application. (C) Higher Education Press and Springer-Verlag GmbH Germany, part of Springer Nature 2018
机译:膜曝气生物膜反应器用于研究一种典型的市政反渗透(RO)浓缩液的脱氮效果,该浓缩液具有高的总氮(TN)浓度和低的C / N比。评估了包括充气压力,水力停留时间和C / N比在内的操作条件对系统性能的影响。通过监测废水中氮含量的浓度来评估脱氮机理。此外,鉴定了盐度升高的微生物耐受性。结果表明,曝气压力为0.02 MPa,水力停留时间为24 h,C / N比为5.8时,最佳TN去除效率达到79.2%。必须补充目标RO精矿的碳源,以促进反硝化过程。盐度对反硝化细菌和亚硝酸盐氧化细菌的抑制作用是显着的,这表明这项工作条件中TN去除能力有限。加入的盐(NaCl)量低于20 g / L时,TN去除效率保持超过70%。这项工作初步证明了MABR在低C / N比的市政RO精矿脱氮方面的可行性,并为进一步扩大规模的应用提供了技术指导。 (C)高等教育出版社和德国Springer-Verlag GmbH,Springer Nature 2018的一部分

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