首页> 美国卫生研究院文献>Journal of Genetic Engineering Biotechnology >Optimization of Cr(VI) biosorption onto Aspergillus niger using 3-level Box-Behnken design: Equilibrium kinetic thermodynamic and regeneration studies
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Optimization of Cr(VI) biosorption onto Aspergillus niger using 3-level Box-Behnken design: Equilibrium kinetic thermodynamic and regeneration studies

机译:使用三级Box-Behnken设计优化Cr(VI)在黑曲霉上的生物吸附:平衡动力学热力学和再生研究

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摘要

Heavy metal biosorption is an efficient technology for the decontamination of metal from industrial waste water. The present study focused on exploration of Aspergillus niger towards removal of Cr(VI) from aqueous solution. The influence of different experimental parameters—initial pH, adsorbent dose, initial concentration, contact time, shaking speed, temperature, and their combined effect during Cr(VI) adsorption—was investigated by means of response surface methodology based on four factorial Box–Behnken experimental design. Optimized values of initial Cr(VI) concentration, pH, adsorbent dose, and contact time were found as 33.33 mg/L, 4.6, 1.0 g/L, and 48.45 min, respectively. A. niger showed the highest adsorption capacity 11.792 mg/g at initial pH 2.0. Equilibrium data fitted well to the Temkin and Freundlich isotherms. Cr(VI) biosorption showed Pseudo-second order rate kinetics. The activation energy of the adsorption was estimated as 2.9 × 10−3 kJ/mol. Thermodynamics properties of the Cr(VI) biosorption was spontaneous in nature. Desorption study showed that nearly 94% of the Cr(VI) adsorbed on A. niger could be desorbed using 0.5 M EDTA.
机译:重金属生物吸附是一种从工业废水中去除金属污染的有效技术。本研究的重点是探索黑曲霉从水溶液中去除Cr(VI)的方法。通过基于四阶Box-Behnken的响应面方法研究了不同实验参数(初始pH,吸附剂剂量,初始浓度,接触时间,振荡速度,温度及其在Cr(VI)吸附过程中的综合效应)的影响。实验设计。初始Cr(VI)浓度,pH,吸附剂剂量和接触时间的最佳值分别为33.33 mg / L,4.6、1.0 g / L和48.45 min。黑曲霉在初始pH 2.0时显示出最高的吸附量11.792 mg / g。平衡数据非常适合Temkin和Freundlich等温线。 Cr(VI)的生物吸附显示伪二级速率动力学。吸附的活​​化能估计为2.9×10 -3 kJ / mol。 Cr(VI)生物吸附的热力学性质是自然发生的。解吸研究表明,使用0.5M EDTA可以解离吸附在黑曲霉上的几乎Cr(VI)的94%。

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