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微生物燃料电池与电解池去除有机碳及氨氮性能

Performance of microbial fuel cell and microbial electrolysis cell on removal of organic carbon and ammonia nitrogen

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【作者】 齐世华于景洋刘芳王红梅杨丽英

【Author】 Qi Shihua;Yu Jingyang;Liu Fang;Wang Hongmei;Yang Liying;Heilongjiang Institute of Construction Technology;School of Environment,Harbin Institute of Technology;

【机构】 黑龙江建筑职业技术学院哈尔滨工业大学环境学院

【摘要】 以人工合成废水为底物,市政污水厂污泥为接种物,建立单室无膜空气阴极微生物燃料电池(MFC),考察其对水中有机碳和NH4+-N的同步去除性能,并建立微生物电解池(MEC)进行性能对比。结果表明,MFC系统可实现最大的有机碳和NH4+-N去除率,分别为(97.5%±2.7%)和(54.9%±1.8%),最大产电效率为(478.9±32.1) mA/L。MEC系统最大有机碳去除率为(99.5%±0.8%),略高于MFC系统,但其NH4+-N去除率很低,最高仅为(10.2%±0.5%),远低于MFC系统。这是因为MEC系统仅通过厌氧微生物的增殖代谢需求去除NH4+-N,而MFC系统则通过部分硝化和直接氧化作用去除NH4+-N。

【Abstract】 The single-chamber membrane-free microbial fuel cell(MFC) is constructed to investigate the simultaneous removal performance of organic carbon and ammonia nitrogen in the wastewater,which is prepared by using synthetic wastewater as substrate and municipal sludge as inoculum. The microbial electrolysis cell(MEC) is also employed to compare with the MFC. The maximum removal rates of organic carbon and NH4+-N obtained in MFC are(97.5%±2.7%) and(54.9%±1.8%),respectively. A highest current density of(478.9±32.1) m A/L is achieved by MFC. Compared with MFC,MEC has a slightly higher organic carbon removal rate of(99.5%±0.8%). However,the NH4+-N removal rate is at a low level with highest value of(10.2%±0.5%),much lower than MFC. The results can be explained by the following reason that the NH4+-N removal in MEC is just accomplished by the metabolic demand of anaerobic microorganisms,while the function of partial nitrification and direct oxidation mainly contribute to the NH4+-N removal in MFC.

  • 【文献出处】 工业水处理 ,Industrial Water Treatment , 编辑部邮箱 ,2019年12期
  • 【分类号】X703;TM911.45
  • 【被引频次】4
  • 【下载频次】526
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