首页> 外文期刊>The Journal of the Textile Institute >Decolorization of Reactive Yellow 174 dye in real textile wastewater by active consortium: experimental factorial design for bioremediation process optimization
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Decolorization of Reactive Yellow 174 dye in real textile wastewater by active consortium: experimental factorial design for bioremediation process optimization

机译:活性联盟实际纺织废水中反应性黄色174染料的脱色:生物修复过程优化实验阶乘设计

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摘要

Dyes are priority pollutants, commonly found at significant concentrations in textile effluents. The presence of dye stuffs in wastewater can cause severe problems to aquatic life and human beings. Therefore, the removal of dyes from wastewater is important in order to minimize their hazardous effects on the environment. The best microbial species for such an application was selected amongst the isolated bacterial populations by conducting cold bifunctional reactive dye namely CI Reactive Yellow 174 (CI RY 174) batch degradation studies using bacterial strains. The most suitable species wereSphingomonas paucimobilis,Pseudomonas putidaandLactobacillus acidophilus. Process parameters were optimized using response surface methodology (RSM) and under the optimum conditions (e.g. inoculum size of 10% (OD600nm= 1), temperature of 35 degrees C, 150 ppm, and time of 5 days). The maximum COD and color removal efficiencies, when tested with 750 ppm dye using batch reactors were found to be 86% and 90%, respectively. Our results showed that bacteria had a high decolorization capacity. High regression coefficient values (predictedR(2)= 83.65%) confirmed that the predicted values were in compliance with the experimental values implying the appropriateness of the employed regression model. The adequacy of the model was validated by different descriptive statistics viz, regression, residual error,Fandpvalues. UV-visible and FTIR spectroscopy analysis confirmed the biodegradation of CI RY 174. Using phytotoxicity endpoints, toxicological studies of CIRY 174 before and after biodegradation were studied. Toxicity assay proved that biodegradation led to detoxification of CIRY 174 dye.
机译:染料是优先级污染物,常见于纺织废水中的显着浓度。废水中染料的存在可能对水生生命和人类造成严重问题。因此,从废水中除去染料是重要的,以最大限度地减少对环境的危险作用。通过使用细菌菌株的Ci反应性黄色174(CI RY 174)分批降解研究,选择了这种应用的最佳微生物物种。使用细菌菌株的批量降解研究。最合适的物种Wersphingomonas paucimobilis,假单胞菌普德达达替氏菌酸酐。使用响应表面方法(RSM)和最佳条件优化工艺参数(例如,Inoculum尺寸为10%(OD600NM = 1),温度为35℃,150ppm和5天时间)。使用批量反应器用750ppm染料测试的最大COD和颜色去除效率分别为86%和90%。我们的研究结果表明,细菌具有高脱色能力。高回归系数值(预测(2)= 83.65%)证实预测值符合暗示所采用的回归模型的适当性的实验值。通过不同的描述性统计,回归,残差错误,Fandpvalues验证了模型的充分性。 UV可见和FTIR光谱分析证实了CI RY 174的生物降解。使用植物毒性终点,研究了生物降解前后CIRY 174的毒理学研究。毒性检测证明,生物降解导致了Ciry 174染料的排毒。

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  • 来源
    《The Journal of the Textile Institute》 |2021年第9期|1449-1459|共11页
  • 作者单位

    Monastir Univ Lab Anal Treatment & Valorizat Environm Pollutant Fac Pharm Monastir Avicenne St Monastir Tunisia|Sfax Univ Higher Inst Biotechnol Sfax ISBS Sfax Tunisia;

    Monastir Univ Monastir Tunisia;

    Monastir Univ Monastir Tunisia;

    Monastir Univ Lab Anal Treatment & Valorizat Environm Pollutant Fac Pharm Monastir Avicenne St Monastir Tunisia|King Abdulaziz Univ Fac Sci Dept Biochem Jeddah Saudi Arabia;

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

    Reactive Yellow 174; response surface; mixture design; FTIR; UV-visible;

    机译:反应性黄色174;响应面;混合设计;FTIR;UV可见;

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