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固定化细胞流化床处理含酚废水的研究 被引量:3

Research of Treated Wastewater Containing Phenol by the Fluidized Bed with Immobilized Cells
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摘要 以改性聚丙烯酰胺为载体对苯酚降解菌进行固定化,采用流化床反应器对模拟含酚废水进行降解实验。考察在不同曝气量、pH和苯酚浓度下,固定化细胞降解苯酚性能的变化。结果表明,在有效容积为6L的反应器内固定化细胞凝胶的投加量为1.4g/L、pH6~8、曝气量为70L/h时,24h内可使浓度为700mg/L的苯酚完全降解。当采用有效容积为5.5L的流化床反应器对模拟含酚废水进行连续降解实验时,在进水苯酚浓度为400mg/L,曝气量为60L/h,进水流量0.6L/h,HRT为9.5h时,出水苯酚浓度可降低到20mg/L以下。连续使用30d后固定化细胞凝胶的机械强度和弹性仍较好。说明固定化细胞有更好的苯酚耐受性、较高的降酚速率和更广泛的pH,且可重复使用。 The bacterium was immobilized by using modified polyacrylamide,the fluidized bed reactors were used for degradation experiment with simulative phenol wastewater. The changes of immobilized cells degrading phenol were studied at different aeration amounts,pH and the concentration of phenol. Results show that in the effective volume of 6L of the reactors,the immobilized cells in the dosage was 1.4g/L,pH 6 ~8,aeration amounts 70L/h. Within 24 hours enable the concentration of 700mg/L phenol to degrade completely. The effective volume of 5.5L of the fluidized bed reactors were used for continuous influent degradation experiment with simulative phenol wastewater. When the concentration of phenol was less than 400mg/L,the aeration amounts 60L/h,influent amounts 0.6L/h,HRT 9.5h,the effluent concentration of phenol can be reduced to less than 20mg/L. After continuous used for 30 days,the mechanical strength and flexible of immobilized cells was still good. Compared to free cells,immobilized cells have a better ability of phenol tolerance,a high degradation rate and a wider range of pH,which can be used repeatedly.
出处 《环境科学与技术》 CAS CSCD 北大核心 2010年第5期147-150,共4页 Environmental Science & Technology
基金 辽宁省教育厅科学技术研究项目(2008576)
关键词 苯酚 固定化细胞 流化床反应器 phenol immobilized cells fluidized bed reactors
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  • 1GB/T8314-2002,茶游离氨基酸总量的测定[S].
  • 2FAKHFAKH ZOUARI N, HADDAR A, HMIDET N, et al. Application of statistical experimental design for optimization of keratinases production by Bacillus pumilus A1 grown on chicken feather and some biochemical properties[J]. Process Biochemistry, 2010,46 (5) : 617-626.
  • 3WAKIL S M,DADA M T,ONILUDE A A. Isolation and characterization of keratinase-producing bacteria from poultry waste[J]. Journal of Pure and Applied Microbiology, 2011,5 (2) : 567-580.
  • 4MABROUK M E M. Feather degradation by a new keratino lytic Streptomyces sp. MS-2[J]. World Journal of Microbiology and Biotechnology,2008,24(10) :2331-2338.
  • 5TAN Yingying, ZHENG Ping, HU Baolan, et al. Feather degradation by Paecilomyces sp. isolated from sewage sludge[J]. Journal of Zhejiang University: Agriculture & Life Sciences, 2004,30 (6) : 618-623.
  • 6DINAMARCA M A, IBACACHE QUIROGA C, BAEZA P, et al. Biodesulfurization of gas oil using inorganic supports biomodified with metabolically active cells immobilized by adsorption[J]. Bioresouree Technology, 2010,101(7) : 2375-2378.
  • 7SHRINIVAS D,KUMAR R,NAIK G R. Enhanced production of alkaline thermostable keratinolytic protease from calcium alginate immobilized cells of thermoalkalophilic Bacillus halodurans JB 99 exhibiting dehairing activity[J]. Journal of Industrial Microbiology and Biotechnology, 2012,39 (1) : 93-98.
  • 8东市郎,户仓清一,西村绅一朗,等.徐放性制剂:日本,昭61-197529[P].1986-09-01.
  • 9臧荣鑫,杨具田.生物化学实验教程[M].兰州:兰州大学出版社,2010:178.
  • 10GRADISAR H, KERN S, FRIEDRICH J. Keratinase of Doratomyce microsporus[J]. Applied Microbiology and Biotechnology, 2000,53 (2) :196-200.

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