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Stabilization of bacterial cells culture on immobilized Alginate beads and optimization of Congo red decolorization

机译:细菌细胞培养物对固定的海藻酸盐珠粒的稳定化及刚果红脱色的优化

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The paper deals with the primary objective to optimize different parameters such as concentration, temperature, p H, time and size of cells for the decolorization of azo dye (Congo red) by using bacterial isolates by the method of immobilized bacterial cells. Staphylococcus aureus immobilized beads show a maximum dye decolorization of 94% under optimum condition and found to be more efficient in dye decolorization. The optimum value for degradation is found to be 35°C, for 400 mg/L of concentration of dye at the medium p H of 7. The order of the reaction was found to be first order with the rate constant of 0.073 h -1 . The dye adsorbed on the bead surface follows Freundlich adsorption isotherm with the constant values are K = 1.368 and 1/n = 0.773. Studies have been carried out by FTIR, GC-MS analysis for confirming the biodegradation of Congo Red by the immobilized bacterial cells. The results reported warrant further investigation to establish the usefulness of these isolates for bioremediation and biodegradation application such as wastewater treatment.
机译:本文涉及主要目的,以优化不同参数,例如通过固定的细菌细胞的方法使用细菌分离株来优化不同参数的浓度,温度,P h,时间和细胞的时间和尺寸,用于脱氧染料(刚果红色)。金黄色葡萄球菌固定化珠子在最佳条件下显示出94%的最大染料脱色,发现在染料脱色中具有更有效的脱色。发现劣化的最佳值为35℃,培养基PH的400mg / L浓度为7.反应的顺序是首先是0.073 H -1的速率常数。吸附在珠子表面上的染料遵循Freundlich吸附等温线,恒定值是k = 1.368和1 / n = 0.773。通过FTIR,GC-MS分析进行了研究,以确认通过固定化的细菌细胞对刚果红色的生物降解。结果报告了进一步调查,以确定这些分离株的生物化和生物降解应用的有用性,如废水处理。

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