生物炭
化学
去壳
反硝化
硫代硫酸盐
核化学
硝酸盐
铁质
环境化学
氮气
无机化学
硫黄
有机化学
植物
热解
生物
作者
Enlei Liang,Liang Xu,Junfeng Su,Yuzhu Yang,Yan Liu
标识
DOI:10.1016/j.biortech.2023.129183
摘要
The iron reduction coupled with ammonia oxidation process (Feammox) is a biological reaction process associated with the nitrogen cycle that has been discovered in recent years. In this study, the iron-reducing bacterium Klebsiella sp. FC61 was attached by synthesizing nano-loadings of iron tetroxide (nFe3O4) onto rice husk biochar (RBC), and the RBC-nFe3O4 was used as an electron shuttle to participate in the biological iron reduction process of soluble and insoluble Fe3+ to improve the ammonia oxidation efficiency to 81.82%. This acceleration of electron transfer increased the carbon consumption rate and further tuned up the COD removal efficiency to 98.00%. The Feammox could be coupled with iron denitrification for internal nitrogen/iron cycling to reduce the accumulation of nitrate by-products and achieve the recycling of iron. In addition, pollutants such as Ni2+, ciprofloxacin, and formed chelates could be removed by pore adsorption and π-π interactions using bio-iron precipitates produced by iron-reducing bacteria.
科研通智能强力驱动
Strongly Powered by AbleSci AI