亚硝酸盐和硝酸盐浓度对高浓度合成废水富集AFB-MFC性能的影响

Biotechnology Research International Pub Date : 2015-01-01 Epub Date: 2015-10-01 DOI:10.1155/2015/798397
Jian-Sheng Huang, Ping Yang, Chong-Ming Li, Yong Guo, Bo Lai, Ye Wang, Li Feng, Yun Zhang
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引用次数: 9

摘要

为了研究亚硝酸盐和硝酸盐对微生物燃料电池性能的影响,采用厌氧流化床(AFB)与微生物燃料电池(MFC)组合系统处理高强度含氮合成废水。在本研究之前,AFB-MFC已在连续流模式下处理高强度有机废水约一年。结果表明:当亚硝酸盐氮和硝态氮浓度分别从1700 mg/L增加到4045 mg/L和545 mg/L增加到1427 mg/L时,亚硝酸盐氮和硝态氮的去除率均在99%以上;COD去除率由60.00%提高到88.95%;电压约为375±15 mV,功率密度为70±5 mW/m(2)。当亚硝酸盐氮和硝酸盐氮浓度分别高于4045 mg/L和1427 mg/L时,亚硝酸盐氮和硝酸盐氮的去除率分别为86%、88%、77%、180 mV和17 mW/m(2),而亚硝酸盐氮和硝酸盐氮的去除率分别为4265 mg/L和1661 mg/L。此外,用气相色谱仪对阳极室产生的沼气成分进行了分析。得到了氮气、甲烷和二氧化碳。结果表明,反硝化发生在阳极室。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of Nitrite and Nitrate Concentrations on the Performance of AFB-MFC Enriched with High-Strength Synthetic Wastewater.

Effect of Nitrite and Nitrate Concentrations on the Performance of AFB-MFC Enriched with High-Strength Synthetic Wastewater.

Effect of Nitrite and Nitrate Concentrations on the Performance of AFB-MFC Enriched with High-Strength Synthetic Wastewater.

Effect of Nitrite and Nitrate Concentrations on the Performance of AFB-MFC Enriched with High-Strength Synthetic Wastewater.

In order to study the effect of nitrite and nitrate on the performance of microbial fuel cell, a system combining an anaerobic fluidized bed (AFB) and a microbial fuel cell (MFC) was employed for high-strength nitrogen-containing synthetic wastewater treatment. Before this study, the AFB-MFC had been used to treat high-strength organic wastewater for about one year in a continuous flow mode. The results showed that when the concentrations of nitrite nitrogen and nitrate nitrogen were increased from 1700 mg/L to 4045 mg/L and 545 mg/L to 1427 mg/L, respectively, the nitrite nitrogen and nitrate nitrogen removal efficiencies were both above 99%; the COD removal efficiency went up from 60.00% to 88.95%; the voltage was about 375 ± 15 mV while the power density was at 70 ± 5 mW/m(2). However, when the concentrations of nitrite nitrogen and nitrate nitrogen were above 4045 mg/L and 1427 mg/L, respectively, the removal of nitrite nitrogen, nitrate nitrogen, COD, voltage, and power density were decreased to be 86%, 88%, 77%, 180 mV, and 17 mW/m(2) when nitrite nitrogen and nitrate nitrogen were increased to 4265 mg/L and 1661 mg/L. In addition, the composition of biogas generated in the anode chamber was analyzed by a gas chromatograph. Nitrogen gas, methane, and carbon dioxide were obtained. The results indicated that denitrification happened in anode chamber.

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