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用于开发由活性细菌群落对偶氮染料进行脱色/生物降解的两级缺氧-好氧反应器的雷马素黑B使用的动力学研究方法。

Kinetic study approach of remazol black-B use for the development of two-stage anoxic-oxic reactor for decolorization/biodegradation of azo dyes by activated bacterial consortium.

作者信息

Dafale Nishant, Wate Satish, Meshram Sudhir, Nandy Tapas

机构信息

National Environmental Engineering Research Institute, Nehru Marg, Nagpur 440020, India.

出版信息

J Hazard Mater. 2008 Nov 30;159(2-3):319-28. doi: 10.1016/j.jhazmat.2008.02.058. Epub 2008 Feb 23.

Abstract

The laboratory-isolated strains Pseudomonas aeruginosa, Rhodobacter sphaeroides, Proteus mirabilis, Bacillus circulance, NAD 1 and NAD 6 were observed to be predominant in the bacterial consortium responsible for effective decolorization of the azo dyes. The kinetic characteristics of azo dye decolorization by bacterial consortium were determined quantitatively using reactive vinyl sulfonated diazo dye, remazol black-B (RB-B) as a model substrate. Effects of substrate (RB-B) concentration as well as different substrates (azo dyes), environmental parameters (temperature and pH), glucose and other electron donor/co-substrate on the rate of decolorization were investigated to reveal the key factor that determines the performance of dye decolorization. The activation energy (E(a)) and frequency factor (K(0)) based on the Arrhenius equation was calculated as 11.67 kcal mol(-1) and 1.57 x 10(7)mg lg MLSS(-1)h(-1), respectively. The Double-reciprocal or Lineweaver-Burk plot was used to evaluate V(max), 15.97 h(-1) and K(m), 85.66 mg l(-1). The two-stage anoxic-oxic reactor system has proved to be successful in achieving significant decolorization and degradation of azo dyes by specific developed bacterial consortium with a removal of 84% color and 80% COD for real textile effluents vis-à-vis >or=90% color and COD removal for synthetic dye solution.

摘要

观察到实验室分离菌株铜绿假单胞菌、球形红杆菌、奇异变形杆菌、环状芽孢杆菌、NAD 1和NAD 6在负责偶氮染料有效脱色的细菌群落中占主导地位。以活性乙烯磺化重氮染料雷马素黑B(RB - B)为模型底物,定量测定了细菌群落对偶氮染料脱色的动力学特征。研究了底物(RB - B)浓度以及不同底物(偶氮染料)、环境参数(温度和pH)、葡萄糖和其他电子供体/共底物对脱色速率的影响,以揭示决定染料脱色性能的关键因素。根据阿伦尼乌斯方程计算出的活化能(E(a))和频率因子(K(0))分别为11.67 kcal mol(-1)和1.57 x 10(7)mg lg MLSS(-1)h(-1)。采用双倒数或Lineweaver - Burk图评估V(max)为15.97 h(-1),K(m)为85.66 mg l(-1)。事实证明,两级缺氧 - 好氧反应器系统通过特定培养的细菌群落成功实现了偶氮染料的显著脱色和降解,对于实际纺织废水,脱色率达84%,化学需氧量(COD)去除率达80%;而对于合成染料溶液,脱色率和COD去除率均≥90%。

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