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Application of the mixture design to decolourise effluent textile wastewater using continuous stirred bed reactor

机译:混合设计在连续搅拌床反应器中对纺织品废水进行脱色的应用

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摘要

Important pollutants in textile effluents are mainly recalcitrant organics, colours, toxicants and inhibitory compounds, surfactants, chlorinated compounds (AOX), pH and salts. An aerobic system using a continuous stirred bed reactor (SBR) was continuously operated at constant temperature and fed with textile wastewater (pH 7 and total chemical oxygen demand (COD) I 700 mg/f ).This report is focused on the decolourisation treatment of effluent by a bacterial consortium (Sphingomonas paucimobilis, Bacillus sp. and filamentous bacteria). The influence of the different mixtures of 3 strains on the decolourisation of effluent (cell density fixed at OD600 = I) was studied using an equilateral triangle diagram and mixture experimental design to assess colour and COD removal during species evolution. With the aid of analysis software (Minitab 14.0), the formulation of pure culture was optimised for several responses and the best formulation obtained. The results suggested that the highest predictable specific decolourisation rate and chemical oxygen demand (COD) were 86.72% and 75.06%, respectively. Regression coefficients between the variables and the responses of decolourisation and COD removal were, respectively, R~2 = 72.48% and 54.28%, which indicated excellent evaluation of experimental data by the polynomial regression model. UV-visible analysis confirmed biodegradation of effluent.
机译:纺织品废水中的重要污染物主要是顽固性有机物,色素,有毒物质和抑制性化合物,表面活性剂,氯化化合物(AOX),pH和盐。使用连续搅拌床反应器(SBR)的好氧系统在恒定温度下连续运行,并进料纺织废水(pH 7和总化学需氧量(COD)I 700 mg / f)。细菌财团(鞘氨醇单胞菌,芽孢杆菌和丝状细菌)产生的废水。使用等边三角形图和混合物实验设计研究了三种菌株的不同混合物对流出物脱色(细胞密度固定在OD600 = I)的影响,以评估物种进化过程中颜色和COD的去除。借助分析软件(Minitab 14.0),可以优化纯培养物的配方,以获得多种响应,并获得最佳配方。结果表明,最高的可预测的特定脱色率和化学需氧量(COD)分别为86.72%和75.06%。变量与脱色和COD去除响应之间的回归系数分别为R〜2 = 72.48%和54.28%,表明通过多项式回归模型对实验数据进行了出色的评估。紫外线可见分析证实了废水的生物降解。

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  • 来源
    《Water SA》 |2011年第1期|p.21-26|共6页
  • 作者单位

    Laboratoire d'Analyse, Traitement et Valorisation des Polluants de I'Environnement et des Produits,Faculte de Pharmacie, Rue Avicenne, 5000 Monastir, Tunisie;

    Unite de recherche Genome Humain, Diagnostic Immunitaire et Valorisation a I'lnstitut Superieur de Biotechnologie,5000 Monastir (Tunisie);

    Laboratoire d'Analyse, Traitement et Valorisation des Polluants de I'Environnement et des Produits,Faculte de Pharmacie, Rue Avicenne, 5000 Monastir, Tunisie;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    textile wastewater; bacterial decolourisation; response surface; mixture design; sbr;

    机译:纺织废水;细菌脱色;响应面混合物设计;sbr;

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