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Characteristics of substrates degradation in A/O1/O2 biofilm system

LIU Guohua1,LIU Fang2,CHANG Xin2,YANG Fei2   

  1. 1 School of Environmental Science and Engineering,Donghua University,Shanghai 200051,China;2 School of Chemistry and Chemical Engineering,China University of Petroleum,Qingdao 266555,Shandong,China
  • Online:2011-02-05 Published:2011-02-05

A/O1/O2生物膜系统污染物降解特性

刘国华1,刘 芳2,常 新2,杨 飞2   

  1. 1东华大学环境科学与工程学院,上海 200051;2中国石油大学(华东)化学化工学院,山东 青岛 266555

Abstract:

The aerobic reactor of A/O process was separated into two segments and each of them was installed with fiber packing to form an A/O1/O2 biofilm system. In the A/O1/O2 biofilm systemsubstrates degradation characteristics of nylon wastewater in each reactor were investigated. Furthermoreinfrared spectroscopy was used for analyzing substrates decomposition. Good performance of A/O1/O2 biofilm system was achievedand average removal efficiencies of CODNH4+-N and TN were 92.70%85.35% and 58.85% respectively. As organic loadings varied from 1.64 kg/(m3·d) to 4.61 kg/(m3·d)different removal characteristics of CODNH4+-N and TN were observed in AO1 and O2 reactors. For COD removalaverage contribution percentages of AO1 and O2 reactors were 63.08%29.72% and 4.16% respectively. For NH4+-N removalaverage contribution percentages of O1 and O2 reactors were 23.80% and 75.99% respectively. For TN removalaverage contribution percentages of AO1 and O2 reactors were 74.97%19.77% and 4.09% respectively. Investigation on the IR of each wastewater samples demonstrated that in the progress of substrates degradationamino acidamide and aliphatic compounds decreasedbut NH4+NO3HCO3 and carbohydrate increased.

摘要:

将传统A/O工艺的好氧单元分为两段,在各反应器中设置填料,构建了A/O1/O2生物膜系统,对锦纶废水进行处理,研究了污染物在系统各段的降解情况,并借助红外光谱分析方法探讨了污染物中官能团的变化规律。结果表明,A/O1/O2生物膜系统处理锦纶废水的效果良好,CODNH4+-NTN的平均去除率分别为92.70%85.35%58.85%。当有机负荷从1.644.61 kg/(m3·d) 变化时,A段、O1段和O2段中CODNH4+-NTN的降解变化趋势均不相同。对于COD的去除,A段、O1段和O2段的平均贡献率分别为63.08%29.72%4.16%;对于NH4+-N的去除,O1段和O2段的平均贡献率分别为23.80%75.99%;对于TN的去除,A段、O1段和O2段的平均贡献率分别为74.97%19.77%4.09%。经A段缺氧、O1段和O2段好氧处理后,废水中酰胺化合物、氨基酸和脂肪族化合物含量减少,出现了无机的NH4+NO3HCO3以及碳水化合物。

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