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Biosorption Of Inorganic Mercury Onto Dead Biomass Of Marine Aspergillus Niger: Kinetic, Equilibrium, And Thermodynamic Studies

机译:无机汞对尼日尔海洋曲霉死生物量的生物吸附:动力学,平衡和热力学研究

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摘要

Large numbers of reports are available on metal binding capacity of different groups of microorganisms. However, reports on the equilibrium and thermodynamic studies on biosorption process are few. The present study was carried out in a batch system using dead biomass of marine Aspergillus niger for the sorption of Hg(Ⅱ). Preliminary experiments revealed that removal rate of Hg(Ⅱ) was maximum at pH 3. A. niger exhibited the highest Hg(Ⅱ) uptake of 40.53 mg/g of biomass at pH 3 and 40℃. Kinetic studies reveal that pseudo-second order model showed best fit to experimental data. Two linear portions in the plot q_t (mg/g) vs t~(1/2) (min~(1/2)) indicate the existence of an intraparticular diffusion resistance in the sorption process. Experimental sorption data were analyzed using four and three, two-parameter models (Langmuir, Freundlich, Dubinin-Radushkevich, and Temkin) and three-parameter equilibrium models (Khan, Sips, and Toth), respectively. It was observed that Langmuir among two parameters models and, Sips among three parameter models, exhibited the best fit to the experimental data. Thermodynamic parameters on the biosorption (△G°, △H°, △S°) were also determined.
机译:关于不同种类微生物的金属结合能力,已有大量报道。然而,关于生物吸附过程的平衡和热力学研究的报道很少。本研究是利用黑曲霉的死生物量吸附Hg(Ⅱ)的分批系统进行的。初步实验表明,在pH 3时,Hg(Ⅱ)的去除率最大。在pH 3和40℃下,黑曲霉的Hg(Ⅱ)吸收量最高,为40.53 mg / g生物量。动力学研究表明,伪二级模型最适合实验数据。 q_t(mg / g)vs t〜(1/2)(min〜(1/2))图中的两个线性部分表示在吸附过程中存在颗粒内扩散阻力。使用四个参数和三个参数模型(Langmuir,Freundlich,Dubinin-Radushkevich和Temkin)和三个参数平衡模型(Khan,Sips和Toth)分析了实验吸附数据。观察到两个参数模型之间的Langmuir和三个参数模型之间的Sips表现出与实验数据的最佳拟合。还确定了生物吸附的热力学参数(△G°,△H°,△S°)。

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