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微氧和COD/SO_4^(2-)值对硫酸盐降解的影响 被引量:1

INFLUENCE ON SULFATE DEGRADATION BY MICRO-AEROBIC ENVIRONMENT AND THE RATIO OF COD TO SO_4^(2-)
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摘要 试验研究了微氧环境和不同COD/SO42-值下高浓度硫酸盐废水的降解,参照制药废水配置的进水保持稳定的COD浓度,改变SO42-浓度,分别在微氧和厌氧环境下考察了系统出水中SO42-、S2-、COD和微生物形态等因素。结果表明,微氧环境会对COD的降解产生不利影响,能够一定程度上抑制硫酸盐还原过程和实现硫酸盐还原产物的继续氧化,且上述影响的程度与COD/SO42-值有关。 Degradation of high-concentration sulfate wastewater is studied under micro-aerobic environment and different ratio of COD to SO_4 2-.When the COD concentration in the influent prepared with reference to pharmaceutical wastewater keeps stable and the SO_4 2-concentration is changed,the factors in the effluent,such as SO_4 2-,S 2-,COD and microbe's patterns,are studied respectively under micro-aerobic environment and anaerobic environment.The results showed that micro-aerobic environment has adverse effects on degradation of COD,sulfate reduction process and continuing oxidation of sulfate reduction products,and these effects relate to the ratio of COD to SO_4 2-.
出处 《环境工程》 CAS CSCD 北大核心 2009年第S1期51-53,共3页 Environmental Engineering
关键词 硫酸盐 微氧 COD/SO42-值 sulfate micro-aerobic ratio of COD to SO_4 2-
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  • 1柏松林,丁雷.水解酸化工艺改善油田采出水生物降解性能[J].哈尔滨商业大学学报(自然科学版),2006,22(5):35-37. 被引量:6
  • 2国家环保局.水和废水监测分析方法(第3版)[M].北京:中国环境科学出版社,1997..
  • 3国家环境保护总局.水和废水分析监测方法(第3版)[M].北京:中国环境科学出版社,1989.
  • 4R.E.Speece.工业废水的厌氧生物技术[M].北京:中国建筑工业出版社,2001.
  • 5LENS P N L,KLIJIN R,LIER J B,et al.Effect of specific gas loading rate on thermophilic (55℃) acidifying (pH 6) and sulfate reducing granular sludge reactors[J].Wat.Res.,2003,37:1033-1047.
  • 6DIANA L C,MARCELO Z,EUGENIO F.Performance of Horizontal-flow anaerobic immobilized sludge (HAIS) reactor treating synthetic substrate subjected to decreasing COD to sulfate ratios[J].Wat.Sci.Tech.,1999,39 (10~11):99-106.
  • 7SHIN HS,JUNG JY,BAE BU,et al.Phase-separated anaerobic toxicity assays for sulfate and sulfide[J].Wat.Environ.Res.,1995,67:802-806.
  • 8VISSER A,HULSHOFF P L W,LETTINGA G.Competition of methanogenic and sulfidogenic bacteria[J].Wat.Sci.Tech.,1996,33 (3):99-110.
  • 9SAMIR K K,HUANG J C.ORP-based oxygenation for sulfide control in anaerobic treatment of high-sulfate wastewater[J].Wat.Res.,2003,37:2053-2062.
  • 10SAMIR K K.Single-stage anaerobic treatment of high sulfate wastewater with oxygenation to control sulfide toxicity[D].Hong Kong:Hong Kong University of Science and Technology,2002.

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  • 1周伟丽,王妍春,今井刚,浮田正夫.高硫酸盐难降解废水高温厌氧处理中限量曝气的应用及影响[J].环境科学,2006,27(7):1339-1344. 被引量:9
  • 2任南琪,王爱杰,赵阳国,等.废水厌氧处理硫酸盐还原菌生态学[M].北京:科学出版社,2009.
  • 3Jalal Shayegan,Farideh Ghavipanjeh,Parisa Mirjafari.The effect of influent COD and upward flow velocity on the behaviour of sulphate-reducing bacteria[J].Process Biochemistry,2005,40(7):2305-2310.
  • 4Tae Young Jeong,Hyung Keun Chung,Sung Ho Yeom,Suk Soon Choi.Analysis of methane production inhibition for treatment of sewage sludge containingsulfate using an anaerobic continuous degradation process[J].Korean J Chem Eng,2009,26(5):1319-1322.
  • 5沈志,刘和,许科伟,李秀芬,陈坚.硫酸盐还原菌促进市政污泥厌氧发酵产乙酸[J].环境科学研究,2009,22(9):1056-1062. 被引量:5

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