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生物强化MFC去除制药废水中的苯酚及产电性能评估

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以厌氧污泥为阳极室底物,模拟苯酚制药废水为阳极室基质,将产电菌S。oneidensis MR-1以游离态细胞与固定化细胞两种形式加入双室微生物燃料电池(MFC),构建同步处理苯酚制药废水的游离态细胞双室MFC(MFC2)与固定化细胞双室MFC(MFC3),以不添加产电菌的双室MFC(MFC1)为对照组,探讨产电菌S。oneidensis MR-1投加形式对双室MFC产电过程的影响,并分析污染物去除效果与微生物群落特征。结果表明,在3周期的连续运行下,MFC3系统的产电性能与污染物去除效果最佳,最大输出电压为633 mV,最大功率密度为582。7 mW/m2,开路电压为835。9 mV,内阻为398。8 Ω,平均COD去除率为82。5%,平均NH4+-N去除率为74。1%,平均苯酚去除率为82。0%,平均库仑效率为26。6%。根据高通量测序结果,MFC3的阳极生物膜产电菌丰度增加,优势菌群为Proteobac-teria(变形菌门)、Bacteroidota(拟杆菌门)、Firmicutes(厚壁菌门)。固定化细胞技术对双室MFC起到了生物强化作用,为污废水中能源转化提供了一定参考价值,可推动减污降碳协同增效。
Removal of phenol from pharmaceutical wastewater by bioaugmented microbial fuel cells and evaluation of power production performance
Using anaerobic sludge as anode chamber substrate and simulated phenol pharmaceutical wastewater as anode chamber substrate,S.oneidensis MR-1 was added to two-chamber microbial fuel cells(MFC)in the forms of free cells and immobilized cells,to construct a two-chamber MFC with free cells(MFC2)and immobilized cells(MFC3)for si-multaneous treatment of phenol pharmaceutical wastewater.A two-chamber MFC(MFC1)without electrogenic bacteria was used as control group.The effects of the addition form of S.oneidensis MR-1 on the power generation process of the two-chamber MFC were investigated,and the pollutant removal efficiency and microbial community characteristics were analyzed.The results showed that under three cycles of continuous operation,the electricity generation performance and pollutant removal effect of MFC3 system were the best.The maximum output voltage was 633 mV,the maximum power density was 582.7 mW/m2,the open circuit voltage was 835.9 mV,the internal resistance was 398.8 Ω,the average COD removal rate was 82.5%,the average NH4+-N removal rate was 74.1%,the average phenol removal rate was 82.0%,and the average coulombic efficiency was 26.6%.According to high-throughput sequencing results,the abundance of electrogenic bacteria in anode biofilm increased,and the dominant bacteria in anode biofilm were Proteobacteria,Bacteroidota and Firmicutes.Immobilized cell technology has played a role in bioaugmentation of two-chamber MFC,which provides a certain reference value for energy conversion in sewage wastewater,and promotes the synergy of pollution reduction and carbon reduction.

microbial fuel cellbioaugmentationpharmaceutical wastewaterpower generationpollutant removal

朱勇强、沈倩、许婷婷、林鑫

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上海应用技术大学化学与环境工程学院,上海 201418

微生物燃料电池 生物强化 制药废水 产电性能 污染物去除

2025

工业水处理
中海油天津化工研究设计院

工业水处理

北大核心
影响因子:0.737
ISSN:1005-829X
年,卷(期):2025.45(1)