盐度
反硝化
废水
耐盐性
微生物
环境化学
污水处理
化学
环境工程
制浆造纸工业
环境科学
生态学
细菌
生物
氮气
遗传学
有机化学
工程类
作者
Long Chen,Hai Xiang,Liting Zhou,Yanqing Zhang,Yangcheng Ding,Di Wu,Nanwen Zhu,Yifeng Zhang,Hua‐Jun Feng
标识
DOI:10.1016/j.biortech.2024.130688
摘要
Nitrate is a common contaminant in high-salinity wastewater, which has adverse effects on both the environment and human health. However, conventional biological treatment exhibits poor denitrification performance due to the high-salinity shock. In this study, an innovative approach using an electrostimulating microbial reactor (EMR) was explored to address this challenge. With a low-voltage input of 1.2 V, the EMR reached nitrate removal kinetic parameter (kNO3-N) of 0.0166–0.0808 h−1 under high-salinities (1.5 %-6.5 %), which was higher than that of the microbial reactor (MR) (0.0125–0.0478 h−1). The mechanisms analysis revealed that low-voltage significantly enhanced microbial salt-in strategy and promoted the secretion of extracellular polymeric substances. Halotolerant denitrification microorganisms (Pseudomonas and Nitratireductor) were also enriched in EMR. Moreover, the EMR achieved a NO3-N removal efficiency of 73.64 % in treating high-salinity wastewater (salinity 4.69 %) over 18-cycles, whereas the MR only reached 54.67 %. In summary, this study offers an innovative solution for denitrification of high-salinity wastewater
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