Lü Liang, You Wen, Zhang Min, Wu Peng, Shen Yao-Liang
School of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, China.
Jiangsu Collaborative Innovation Center of Water Treatment Technology and Material, Suzhou 215009, China.
Huan Jing Ke Xue. 2018 Mar 8;39(3):1309-1315. doi: 10.13227/j.hjkx.201707197.
Based on the coupling of the ABR process and the MBR process, a novel combined ABR-MBR process, including biophase separation, liquid circulation, and functional linkage, was developed to achieve simultaneous carbon, nutrient, and phosphorus removal when treating domestic wastewater with low carbon/nitrogen ratio and to obtain the best combination of ABR, providing a quality carbon source, and MBR, achieving shortcut nitrification by optimizing hydraulic retention time (HRT). The influence of NO-N recycling ratio on nitrogen and phosphorus removal was investigated at NO-N recycling ratios of 100%, 200%, 300%, and 400%, respectively. The experimental results under different conditions showed that the efficiency of denitrifying phosphorus removal in the ABR was found to increase with increasing NO-N recycling ratio from 100% to 300% but decreased when the NO-N recycling ratio was 400%. Shortcut nitrification was achieved by controlling the low dissolved oxygen (DO) concentration ranges from 0.3 to 1.0 mg·L with the short HRT of 3 h in the MBR reactor. The nitrite accumulation ratio was above 60%, when the NO-N recycling ratio was 300%. Meanwhile, shortcut denitrifying phosphorus removal (where NO-N mainly acted as the electron acceptor for denitrifying phosphorus removal) was achieved and played the dominant role in phosphorus removal.
基于ABR工艺和MBR工艺的耦合,开发了一种新型的ABR-MBR组合工艺,该工艺包括生物相分离、液体循环和功能连接,用于处理低碳/氮比的生活污水时实现碳、营养物和磷的同步去除,并获得ABR(提供优质碳源)和MBR(通过优化水力停留时间(HRT)实现短程硝化)的最佳组合。分别在100%、200%、300%和400%的NO-N循环比下研究了NO-N循环比对氮和磷去除的影响。不同条件下的实验结果表明,ABR中反硝化除磷效率随着NO-N循环比从100%增加到300%而提高,但当NO-N循环比为400%时下降。通过在MBR反应器中控制0.3至1.0mg·L的低溶解氧(DO)浓度范围和3h的短HRT实现了短程硝化。当NO-N循环比为300%时,亚硝酸盐积累率高于60%。同时,实现了短程反硝化除磷(其中NO-N主要作为反硝化除磷的电子受体)并在磷去除中起主导作用。