首页> 外文期刊>International Journal of Environmental Bioremediation & Biodegradation >Exploring the Strength of Pseudomonas Putida ETL-7 in Microbial Degradation and Decolorization of Remazol Black-B
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Exploring the Strength of Pseudomonas Putida ETL-7 in Microbial Degradation and Decolorization of Remazol Black-B

机译:探索恶臭假单胞菌ETL-7在Remazol Black-B微生物降解和脱色中的强度

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Azo dyes represent a major group of dyes causing environmental concern because of their colour, biorecalcitrance nature and potential toxicity to living beings. In the present study an attempt was made to examine the potential of Pseudomonas putida for decolorization of azo dye-Remazol Black B in batch reactor. The influence of different concentration of glucose, pH and temperature on decolorization was studied to find the optimum conditions required for maximum decolorization and degradation. pH 7.0 and 350 C were considered to be the optimum decolorizing conditions because in these conditions only the maximum decolorize was found. 5 g/L glucose present media showed the maximum decolorization. The bacterium exhibited a remarkable color removal capability over a wide range of dye concentration (50-200 mg/l), Colorless cells of P. putida and UV Visible spectroscopic analyses suggested that the decolorizing activity only through biodegradation not by inactive surface adsorption. The above results show the potential of this bacterial strain to be used in the biological treatment of textile effluent under optimum condition.
机译:偶氮染料由于其颜色,生物抵抗性质和对生物的潜在毒性,是引起环境问题的主要染料。在本研究中,尝试检查恶臭假单胞菌在间歇反应器中偶氮染料-Remazol Black B脱色的可能性。研究了不同浓度的葡萄糖,pH和温度对脱色的影响,以找到最大脱色和降解所需的最佳条件。 pH 7.0和350 C被认为是最佳的脱色条件,因为在这些条件下仅发现最大的脱色。 5 g / L葡萄糖存在的培养基显示最大的脱色。该细菌在很宽的染料浓度(50-200 mg / l)范围内都表现出卓越的脱色能力。恶臭假单胞菌的无色细胞和紫外可见光谱分析表明,脱色活性仅通过生物降解而不是通过非活性表面吸附来实现。以上结果表明了该细菌菌株在最佳条件下用于纺织废水生物处理的潜力。

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