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Biosorption of astrazon red dye by the bacterium Rhodopseudomonas sp. strain 51ATA

机译:黄芪核籽菌菌的Astazon Red Dye的生物吸附。菌株51ata.

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摘要

Astrazon red azodye that is still widely used in Turkey is released into the aquatic environment. Since these dyes are degradable into the toxic aromatic amines, they have become a public health and environmental concern. In this study, the biosorption of the Astrazon red dye from aqueous solutions on dehydrated cells of Rhodopseudomonas sp. 51ATA was studied as a function of each pH, temperature and initial dye concentration. Rhodopseudomons sp. 51ATA strain belongs to the Rhodopseudomonas species which is an eco-friendly photosynthetic and facultative anaerobic bacterium. The best uptake of Astrazon red was observed at pH 2.0 and the data obtained were applied to both Freundlich and Langmuir adsorption isotherms. The adsorption data provided an excellent fit to both isotherms and showed good agreement to Scatchard analysis at various temperatures. Freundlich isotherm showed good fit to the data at low temperatures while Langmuir model was suitable for describing the adsorption at higher temperatures. Therefore, from these data, we could report that Rhodopseudomonas sp. 51ATA strain is very efficient bacterium for the removal of dyes from wastewater.
机译:仍然广泛用于土耳其的AstraZon红色亚佐岛被释放到水生环境中。由于这些染料可降解到有毒芳香胺中,因此它们已成为公共卫生和环境问题。在该研究中,Astazon Red Dye的生物吸附来自罗达替莫氏菌脱水细胞水溶液的水溶液。研究了每个pH,温度和初始染料浓度的函数。 rhodopseudomons sp。 51ata菌株属于罗多麦莫纳斯物种,是一种环保光合作用和兼性厌氧菌细菌。在pH 2.0中观察到AstraZon红色的最佳摄取,并将获得的数据应用于Freundlich和Langmuir吸附等温线。吸附数据提供了对两种等温线的优异拟合,并显示出在各种温度下的Scatchard分析的良好协议。 Freundlich等温线显示出低温下的数据,而Langmuir模型适合于描述在较高温度下的吸附。因此,从这些数据中,我们可以报告菱妥莫蒙萨斯SP。 51ata菌株是非常有效的细菌,用于从废水中除去染料。

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