College of Environmental Science & Engineering, Shandong University, Qingdao 266237, PR China; College of Resources and Environment, Northwest A&F University, Yangling, Shaanxi 712100, PR China.
College of Environmental Science & Engineering, Shandong University, Qingdao 266237, PR China.
Sci Total Environ. 2022 May 1;819:152040. doi: 10.1016/j.scitotenv.2021.152040. Epub 2021 Nov 29.
Vertical flow constructed wetlands (VFCWs) have been widely applied worldwide due to their small footprint and large hydraulic load, however, its sustainable operation and application is still challenging because of the unsatisfactory nitrogen removal. This study developed a novel CW coupled with a magnetic field for treating simulated wastewater, and investigated the effects of magnetic field on enhancing treatment performance and responses of wetland plants and microbial community. The results showed that the magnetic field (average 110 mT) had a significantly intensifying effect on organics and nitrogen removal. The removal efficiencies of NH-N and TN in CW exposed to magnetic field (MF-CW) were 10.14% and 9.16% higher than those in control CW (C-CW), and an increased COD removal was also found in MF-CW. Biochemical characteristics of plants indicated that the MF did not cause a severe stress for wetland plants, while MF application shifted significantly the microbial community in CWs. Relative abundances of nitrifying bacteria such as Nitrospira (2.36%), Dokdonella (0.27%) and Nitrosomonas (0.17%) had been significantly promoted due to MF exposure, and nitrification-related microbial enzyme (AMO) activity was also increased by 63%. It can be concluded that introducing MF into CWs could intensify organics and nitrogen removal via the biological process, which would contribute to a better understanding of magnetic coupling mechanism.
垂直流人工湿地(VFCWs)由于占地面积小、水力负荷大而在世界范围内得到广泛应用,但其可持续运行和应用仍然具有挑战性,因为其氮去除效果并不理想。本研究开发了一种新型的 CW 与磁场相结合的方法来处理模拟废水,并研究了磁场对增强处理性能以及湿地植物和微生物群落响应的影响。结果表明,磁场(平均 110mT)对有机物和氮的去除具有显著的强化作用。暴露于磁场的 CW(MF-CW)中 NH-N 和 TN 的去除效率比对照 CW(C-CW)分别高出 10.14%和 9.16%,并且在 MF-CW 中也发现了 COD 的去除增加。植物的生化特性表明,MF 不会对湿地植物造成严重的压力,而 MF 的应用显著改变了 CW 中的微生物群落。由于 MF 的暴露,硝化细菌如硝化螺旋菌(2.36%)、多科唐纳氏菌(0.27%)和亚硝化单胞菌(0.17%)的相对丰度显著增加,硝化相关的微生物酶(AMO)活性也增加了 63%。可以得出结论,将 MF 引入 CW 可以通过生物过程强化有机物和氮的去除,这将有助于更好地理解磁耦机制。