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Response surface modeling of bioremediation of acid black 52 dye using Aspergillus flavus

机译:曲霉菌黄芪酸黑52染料生物修复的响应曲面建模

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摘要

Bioremediation is an efficient process to remove metals and dyes from solutions using different micro-organisms. In the present study, the efficiency of growing Aspergillus flavus (isolated from the effluent of an electroplating industry) to treat a synthetic solution of acid black 52 dye (a trivalent chromium complex dye) was investigated. Maximum removal of dye and chromium was observed to be 390 and 17.22 mg/L, respectively, at an initial dye concentration of 750 mg/L and at pH 4.5 in 50 hours in a batch bioreactor. The biomass concentration was reduced from 4.1 to 0.4 g/L with increasing dye concentration from 100 to 2,000 mg/L. The response surface modeling for color removal was performed using the range of initial dye concentration 200-400 mg/L, pH 4-6 and time 35-50 hours. The optimum conditions for maximum color removal (76.52%) were observed at initial dye concentration: 200 mg/L, pH: 4.75 and time: 50 hours. The deviation (-0.02%) showed a close agreement between the experimental and predicted values of color removal. The scanning electron microscopic and energy dispersive X-ray analyses indicated bioremediation of the dye.
机译:生物修复是一种有效的方法,可以使用不同的微生物从溶液中除去金属和染料。在本研究中,研究了生长曲霉(电镀工业的流出物中分离)治疗酸黑52染料(三价铬复合染料)的合成溶液的效率。在批量生物反应器中以750mg / L的初始染料浓度分别观察到染料和铬的最大去除为390和17.22mg / L.将生物质浓度从4.1降至0.4g / l,从100-2,000mg / L的染料浓度增加。使用初始染料浓度的范围200-400mg / L,pH 4-6和35-50小时的时间进行用于颜色去除的响应表面建模。在初始染料浓度下观察到最佳颜色去除(76.52%)的最佳条件:200mg / L,pH:4.75和时间:50小时。偏差(-0.02%)在实验和预测的颜色去除值之间显示了密切一致。扫描电子显微镜和能量分散X射线分析表明染料的生物化。

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