硫酸盐
反硝化
异养
自养
化学
流出物
环境化学
氨
废水
活性污泥
硫化物
污水处理
硫酸盐还原菌
制浆造纸工业
环境工程
氮气
细菌
生物化学
环境科学
生物
有机化学
工程类
遗传学
作者
Zhonghao Wan,Meng Li,Yufei Bao,Yiheng Jiang
标识
DOI:10.5004/dwt.2017.21674
摘要
To obtain a better understanding of effect of sulfate in the treatment of high strength ammonia organic wastewater, we mainly studied the critical concentration of sulfate sludge could endure, the transformation of main microbial phases and the effluent parameters with the sulfate concentration of influent water increasing in anaerobic-aerobic (A/O) process.The results showed that the activated sludge could endure the sulfate concentration up to utmost 6500 mg/L as removal ratios of CODcr, NH 4 + and TN attained 90%, 92% and 85%, respectively.With the increase of the sulfate concentration, SOUR of sludge weakened gradually due to inhibition of sulfate and sulfide, and main microbial phases changed from metazoan to protozoa, eventually to planktons.After innovatively analyzing the metabolic balance (metabolic pathways and intermediate products) of CODcr and NO 3 -with mathematical method, results indicated that heterotrophic sulfate reduction and autotrophic denitrification-desulfurization gradually strengthened and heterotrophic denitrification weakened.NO 3 -reduced via autotrophic denitrification-sulfurization increased from 28.76% in phase 1 all the way to 62.69% in phase 4, while NO 3 -reduced via heterotrophic denitrification decreased from 71.24% in phase 1 all the way to 37.31% in phase 4 simultaneously.
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