首页> 外文会议>The 3rd International Conference on Bioinformatics and Biomedical Engineering(iCBBE 2009)(第三届生物信息与生物医学工程国际会议)论文集 >Nitrate and COD Reduction Contrast of Biofilm-electrode Reactor in Different Position of Denitrogenation Process
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Nitrate and COD Reduction Contrast of Biofilm-electrode Reactor in Different Position of Denitrogenation Process

机译:脱氮过程中不同位置生物膜电极反应器的硝酸盐和COD还原对比

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To achieve effective combination of hydrogen autotrophic denitrification and traditional biological denitrogenation, two groups of experiments were designed with a self-made experimental biofilm-electrode reactor (BER) put ahead or behind in biological denitrogenation process for the treatment of domestic wastewater from septic tank. On different conditions, the nitrate and the COD reducing efficiency of the biofilmelectrode reactor were contrasted. The experimental results implied that the position of BER in denitrogenation process would strongly affect the reduction rate of the nitrate of BER. With the optimum current intensity of 20mA, the highest nitrate reduction rate of 68.5% would be achieved as the BER was put behind in denitrogenation process, with 29% increased compared with the condition of putting ahead. The highest COD reduction rate of the BER was respectively 27%(with BER put behind) and 17.9%(with BER put ahead), which implied the presence of heterotrophic denitrification process in BER device. Further analyses were given from the view of microbe nutrition. It can be inferred that the denitrogenation process with the BER put behind may provide better nutrition conditions for denitrifying micro-organisms on which autotrophic and heterotrophic denitrification process might be carried out in combination.
机译:为了实现氢自养反硝化与传统生物脱氮的有效结合,设计了两组实验,分别在生物脱氮工艺中领先或落后于自制的生物膜电极反应器(BER)处理化粪池的生活污水。在不同条件下,对比了生物膜电极反应器的硝酸盐和COD还原效率。实验结果表明,BER在脱氮过程中的位置将强烈影响BER硝酸盐的还原速率。在20mA的最佳电流强度下,将BER放到脱氮过程中,最高的硝酸盐还原率将达到68.5%,比提前条件提高了29%。 BER的最高COD降低率分别为27%(落后BER)和17.9%(提前BER),这表明BER设备中存在异养反硝化过程。从微生物营养的角度进行了进一步的分析。可以推断,落后的BER脱氮过程可以为反硝化微生物提供更好的营养条件,在这些微生物上可以同时进行自养和异养反硝化过程。

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