Zheng Xiao-Ying, Zhu Xing, Zhou Xiang, Xu Ya-Dong, Wang Ju, Wei Cheng, Gao Ya-Jie, Zhou Gan
Key laboratory of Integrated Regulation and Resources Development on Shallow Lakes, Ministry of Education, College of Environment, Hohai University, Nanjing 210098 China.
Water Resources Service Center of Jiangsu Province, Nanjing 210029, China.
Huan Jing Ke Xue. 2017 Jun 8;38(6):2412-2418. doi: 10.13227/j.hjkx.201612073.
Aiming at the problem of high concentration of total nitrogen (TN) and low available carbon source for microorganisms in municipal secondary effluent, the vertical flow constructed wetland associated with iron-carbon internal electrolysis (ICIE-VFCW) was applied to investigate the removal efficiencies of pollutants in municipal secondary effluent. Moreover, the mechanism for enhanced nitrogen removal was primarily discussed by the applications of UV visible spectrum (UV-VIS) and gel filtration chromatography (GFC). The results showed that the ICIE-VFCW could improve the COD removal efficiencies and the effluent COD of less than 30 mg·Lcould be stably obtained. The average COD removal efficiencies of the whole year, warm months, and cold months could be increased by 10.16%, 9.81%, 11.22%, respectively, compared to the control group. The effluent TN of the ICIE-VFCW could be maintained below 10 mg·L, and the average TN removal efficiencies of the whole year, warm months and cold months could be increased by 13.72%,12.90%,16.17%, respectively. Besides, compared to the influent, the humification, aromaticity and average relative molecular weight () in the effluent obviously decreased, and the decreased more significantly in the ICIE-VFCW. The ICIE-VFCW could promote the conversion of refractory organics in municipal secondary effluent to the small and readily biodegradable molecules, which could enhance the utilization of organic compounds by microorganisms, thus improving the removal efficiency of nitrogen.
针对城市二级出水微生物总氮(TN)浓度高、有效碳源低的问题,采用铁碳内电解垂直流人工湿地(ICIE-VFCW)研究城市二级出水污染物的去除效率。此外,通过紫外可见光谱(UV-VIS)和凝胶过滤色谱(GFC)初步探讨了强化脱氮机理。结果表明,ICIE-VFCW可提高COD去除效率,稳定获得出水COD小于30mg·L。与对照组相比,全年、温暖月份和寒冷月份的平均COD去除效率分别提高了10.16%、9.81%、11.22%。ICIE-VFCW的出水TN可维持在10mg·L以下,全年、温暖月份和寒冷月份的平均TN去除效率分别提高了13.72%、12.90%、16.17%。此外,与进水相比,出水的腐殖化程度、芳香性和平均相对分子质量()明显降低,且在ICIE-VFCW中降低更为显著。ICIE-VFCW可促进城市二级出水中难降解有机物向小分子易生物降解分子的转化,增强微生物对有机化合物的利用,从而提高氮的去除效率。