同化(音韵学)
废水
生物反应器
营养物
异养
环境科学
微生物燃料电池
氨
污水处理
环境化学
硝化作用
环境工程
化学
制浆造纸工业
氮气
生物
细菌
哲学
语言学
有机化学
电极
物理化学
阳极
遗传学
工程类
作者
Chuanfu Zhao,Tifeng Jiao,Wenhao Zhang,Zhida Zhang,Man Jia,Sheng Liu,Mengru Zhang,Fang Han,Yufei Han,Jianyong Lei,Xianfeng Wang,Weizhi Zhou
标识
DOI:10.1016/j.scitotenv.2024.170697
摘要
Heterotrophic ammonia assimilation (HAA) process had been widely used in the treatment of high salt wastewater, but the electro enhanced coupling process and electron transfer process were rarely studied. In this study, a HAA process coupled microbial fuel cell (MFC) system was established to treat ammonia-containing wastewater under increasing salinity to achieve nitrogen recovery and electricity generation. Up to 95.4 % NH4+-N and 96.4 % COD removal efficiencies were achieved at 2 % salinity in HAA-MFC. The maximum power density and current density at 2 % salinity were 29.93 mW/m2 and 182.37 mA/m2, respectively. The residual organic matter in the cathode effluent was effectively removed by the anode. The increase of salinity not only enhanced the sludge settling performance and activity, but also promoted the enzyme activity and amino acid production of the ammonia assimilation pathway. Marinobacter and Halomonas were gradually enriched at the anode and cathode with increased salinity to promote ammonia assimilation and electron production. This research offered a promising solution to overcome salinity-related challenges in wastewater treatment and resource recovery.
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