State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, 210023, P.R. China.
Nanjing Institute of Environmental Sciences, Ministry of Ecology and Environment, Nanjing, 210042, P.R. China.
Sci Rep. 2020 May 6;10(1):7619. doi: 10.1038/s41598-020-64499-y.
The new-type electrolysis-integrated ecological floating beds (EEFBs) were set up to study their water removal ability due to the excellent water treatment capacity of electrolysis, this enhanced EEFBs were made of polyethylene filled with biochar substrate and in middle of the substrate placed the Mg-Al alloy served as anode and graphite served as cathode. The results show that removal rates of total nitrogen (TN), ammonia nitrogen (NH-N), total phosphorus (TP) and phosphate (PO-P) by the EEFBs increased 53.1%, 96.5%, 76.5% and 74.5%, respectively. The electrolysis reaction was the main pathway for TN and TP removals in the EEFBs. A higher concentration of hydrogen autotrophic denitrification bacteria was recorded in the substrate of the EEFBs than that in the traditional ecological floating beds (EFBs) (p < 0.05), suggesting that the electrolysis may have enhanced the NO-N removal efficiency of the EEFBs by promoting the growth and reproduce of hydrogen autotrophic denitrification bacteria. The in-situ formation of Mg and Al ions from a sacrificial Mg-Al alloy anode, caused PO-P and other suspended matter flocculation, improved phosphorus removal and simultaneously reduced turbidity. Thus, electrolysis-integrated ecological floating bed has high nitrogen and phosphorus removal potential in eutrophic water.
新型电解集成生态浮床(EEFBs)被建立起来,以研究其由于电解出色的水处理能力而具有的除水能力,这种增强型 EEFBs 由填充有生物炭基质的聚乙烯制成,在基质中间放置 Mg-Al 合金作为阳极,石墨作为阴极。结果表明,EEFBs 对总氮(TN)、氨氮(NH-N)、总磷(TP)和磷酸盐(PO-P)的去除率分别提高了 53.1%、96.5%、76.5%和 74.5%。电解反应是 EEFBs 中 TN 和 TP 去除的主要途径。在 EEFBs 的基质中记录到的氢自养反硝化细菌的浓度高于传统生态浮床(EFBs)中的浓度(p<0.05),这表明电解可能通过促进氢自养反硝化细菌的生长和繁殖,提高了 EEFBs 的 NO-N 去除效率。牺牲性 Mg-Al 合金阳极形成的 Mg 和 Al 离子原位形成,引起 PO-P 和其他悬浮物絮凝,提高了磷的去除率,同时降低了浊度。因此,电解集成生态浮床在富营养水中具有高氮磷去除潜力。