Gao Y, Xie Y W, Zhang Q, Yu Y X, Yang L Y
State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210046, China E-mail:
Water Sci Technol. 2016;74(3):714-21. doi: 10.2166/wst.2016.190.
A novel electrolysis-integrated biofilter system was developed in this study to evaluate the intensified removal of nitrogen and phosphorus from contaminated water. Two laboratory-scale biofilter systems were established, one with electrolysis (E-BF) and one without electrolysis (BF) as control. The dynamics of intensified nitrogen and phosphorus removal and the changes of inflow and outflow water qualities were also evaluated. The total nitrogen (TN) removal rate was 94.4% in our newly developed E-BF, but only 74.7% in the control BF. Ammonium removal rate was up to 95% in biofilters with or without electrolysis integration with an influent ammonium concentration of 40 mg/L, and the accumulation of nitrate and nitrite was much lower in the effluent of E-BF than that of BF. Thus electrolysis plays an important role in TN removal especially the nitrate and nitrite removal. Phosphorus removal was significantly enhanced, exceeding 90% in E-BF by chemical precipitation, physical adsorption, and flocculation of phosphorus because of the in situ formation of ferric ions by the anodizing of sacrificial iron anodes. Results from this study indicate that the electrolysis integrated biofilter is a promising solution for intensified nitrogen and phosphorus removal.
本研究开发了一种新型电解集成生物滤池系统,以评估对受污染水中氮和磷的强化去除效果。建立了两个实验室规模的生物滤池系统,一个带有电解装置(E-BF),另一个不带有电解装置(BF)作为对照。还评估了强化氮磷去除的动力学以及进出水水质的变化。在我们新开发的E-BF中,总氮(TN)去除率为94.4%,而在对照BF中仅为74.7%。进水铵浓度为40mg/L时,无论是否集成电解,生物滤池中铵的去除率均高达95%,且E-BF出水的硝酸盐和亚硝酸盐积累量远低于BF。因此,电解在TN去除尤其是硝酸盐和亚硝酸盐去除中起着重要作用。由于牺牲铁阳极阳极氧化原位生成铁离子,通过磷的化学沉淀、物理吸附和絮凝作用,E-BF中的磷去除显著增强,超过了90%。本研究结果表明,电解集成生物滤池是强化氮磷去除的一种有前景的解决方案。