School of the Environment, Nanjing University, Nanjing, 210023, China.
School of the Environment, Nanjing University, Nanjing, 210023, China; State Key Laboratory for Pollution Control and Resource Reuse, Nanjing University Xianlin Campus, Nanjing, 210023, China.
Chemosphere. 2023 Oct;339:139643. doi: 10.1016/j.chemosphere.2023.139643. Epub 2023 Jul 29.
Conductive magnetite nanoparticle (Nano-FeO) can facilitate numerous biological reduction reactions as an outstanding electron mediator for electron transfer. The positive role of Nano-FeO for nitrate removal has gradually gained attention recent years, however, it has not been clarified for the persistence of the promoting effect under different concentrations addition. Performance of nitrogen removal and characteristics of cathodic biofilm were evaluated in this study after Nano-FeO addition with gradient concentration of 100∼500 mg L in microbial electrolytic cells (MEC). Our study illustrated that the optimal concentration was 200 mg L as the removal rate of nitrate increased by 24.76% and the removal rate of total dissolved nitrogen by 29.72%. At the optimal concentration, Nano-FeO increased cathodic biofilm DNA concentration by 61.04%, enhanced electron transport system activity, enriched iron redox bacteria, denitrifying bacteria and genes, as well as increased extracellular polymeric substances (EPS) amount, especially the protein content of soluble-EPS. However, promoting effect on nitrate removal was not visible in high concentration (500 mg L) addition, its electron transport system activity and EPS content were even declined. XPS results indicated that high concentration of Nano-FeO may reduce the availability of electrons to cathodic biofilm by competing for electrons, which inhibit nitrate removal.
导电磁铁矿纳米粒子(Nano-FeO)可以作为电子转移的出色电子介体,促进许多生物还原反应。近年来,Nano-FeO 对硝酸盐去除的积极作用逐渐受到关注,但在不同浓度添加下,其促进效果的持久性尚未得到阐明。本研究在微生物电解池(MEC)中添加梯度浓度为 100∼500mg/L 的 Nano-FeO 后,评估了氮去除性能和阴极生物膜特性。我们的研究表明,最佳浓度为 200mg/L,因为硝酸盐的去除率提高了 24.76%,总溶解氮的去除率提高了 29.72%。在最佳浓度下,Nano-FeO 使阴极生物膜 DNA 浓度增加了 61.04%,增强了电子传递系统的活性,富集了铁氧化还原细菌、反硝化细菌和基因,并增加了胞外聚合物(EPS)的量,特别是可溶-EPS 的蛋白质含量。然而,在高浓度(500mg/L)添加时,对硝酸盐去除的促进作用不明显,其电子传递系统活性和 EPS 含量甚至下降。XPS 结果表明,高浓度的 Nano-FeO 可能通过争夺电子来减少电子对阴极生物膜的可用性,从而抑制硝酸盐的去除。