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Bioremediation of Azo Dye Containing Textile Effluent using Adapted Bacterial Strains under Subsequent Microaerophilic -Aerobic Conditions

机译:在随后的微需氧-好氧条件下使用适应性细菌对含偶氮染料的纺织品废水进行生物修复

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摘要

Textile effluents are causing a wholesome of trouble in our vicinity, which needs to be taken good care of before being discharged in to the natural surroundings. In our present study, we have isolated about 5 different bacterial strains from azo dye containing textile effluent sample. The bacterial strains were allowed to act on the textile effluent under subsequent microaerophilic and aerobic conditions. In the treatment under microaerophilic condition the bacterial strains were allowed to form a biofilm on inert polyurethane foam as individual cultures and as a consortium, in a glass column. The effluent sample was passed through the column in a particular hydraulic retention time (8ml/hr). The samples were collected at the base after treatment in a conical flask, incubated in a metabolic shaker at 120 rpm for a period of 8 hours for aerobic remediation. The consortium was able to elicit an efficient remediation potential than the individual strains at an optimal retention time of 12 hours with 8 hours of aerobic agitation at a pH of 7 and at an optimal organic loading rate of 100% of the effluent load. Analyzing the effluent treated through GC/MS, which found that the toxic end products formed at the end of microaerophilic treatment was removed through the aerobic treatment modality, and the effluent was found to be devoid of any toxicity after clarification and disinfection processes.
机译:纺织废水在我们附近造成了很多麻烦,在排放到自然环境中之前,必须格外小心。在我们目前的研究中,我们从含偶氮染料的纺织品废水样品中分离出大约5种不同的细菌菌株。使细菌菌株在随后的微需氧和好氧条件下作用于纺织品流出物。在微需氧条件下的处理中,允许细菌菌株在惰性聚氨酯泡沫上作为生​​物培养物和财团在玻璃柱中形成生物膜。废水样品在特定的水力停留时间(8毫升/小时)下通过色谱柱。在锥形瓶中处理后,将样品收集在基部,在代谢振荡器中以120 rpm孵育8小时,以进行好氧修复。该联盟能够在12小时的最佳保留时间,pH为7的有氧搅拌8小时和最佳有机负荷率为污水负荷100%的情况下,获得比单个菌株更高的修复潜力。分析通过GC / MS处理的废水,发现通过好氧处理方式去除了微需氧处理结束时形成的有毒终产物,并且在澄清和消毒过程之后发现该废水没有任何毒性。

著录项

  • 来源
    《Journal of Scientific & Industrial Research》 |2016年第2期|124-130|共7页
  • 作者单位

    PG & Research Department of Microbiology, PSG College of Arts & Science, Coimbatore - 641014, India;

    PG & Research Department of Microbiology, PSG College of Arts & Science, Coimbatore - 641014, India;

    PG & Research Department of Microbiology, PSG College of Arts & Science, Coimbatore - 641014, India;

    PG & Research Department of Microbiology, PSG College of Arts & Science, Coimbatore - 641014, India;

    Department of Marine Science, School of Marine Sciences, Bharathidasan University, Tiruchirappalli-620024, India;

    Department of Marine Science, School of Marine Sciences, Bharathidasan University, Tiruchirappalli-620024, India;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Decolorization; Textile effluent; Biofilm; Microbial remediation; Microbial biodegradation;

    机译:脱色;纺织废水;生物膜微生物修复;微生物生物降解;
  • 入库时间 2022-08-18 02:50:58

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