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用大孔真菌血红密孔菌去除固定床柱中的重金属。

Heavy metals removal in fixed-bed column by the macro fungus Pycnoporus sanguineus.

作者信息

Zulfadhly Z, Mashitah M D, Bhatia S

机构信息

School of Chemical Engineering, Universiti Sains Malaysia, Perak Branch Campus, 31750 Tronoh, Perak Darul Ridzuan, Malaysia.

出版信息

Environ Pollut. 2001;112(3):463-70. doi: 10.1016/s0269-7491(00)00136-6.

Abstract

The ability of Pycnoporus sanguineus to adsorb heavy metals from aqueous solution was investigated in fixed-bed column studies. The experiments were conducted to study the effect of important design parameters such as column bed height, flow rate and initial concentration of solution. The breakthrough profiles were obtained in these studies. A mathematical model based on external mass transfer and pore diffusion was used for the prediction of mass transfer coefficient and effective diffusivity of metals in macro-fungi bed. Experimental breakthrough profiles were compared with the simulated breakthrough profiles obtained from the mathematical model. Bed Depth Service Time (BDST) model was used to analyse the experimental data and evaluated the performance of biosorption column. The BDST model parameters needed for the design of biosorption columns were evaluated for lead, copper and cadmium removal in the column. The columns were regenerated by eluting the metal ions using 0.1 M hydrochloric acid solution after the adsorption studies. The columns were subjected to repeated cycles of adsorption of same metal ions and desorption to evaluate the removal efficiency after adsorption-desorption.

摘要

在固定床柱实验中研究了血红密孔菌从水溶液中吸附重金属的能力。进行这些实验是为了研究重要设计参数的影响,如柱床高度、流速和溶液初始浓度。在这些研究中获得了穿透曲线。基于外部传质和孔扩散的数学模型用于预测金属在大型真菌床中的传质系数和有效扩散系数。将实验穿透曲线与从数学模型获得的模拟穿透曲线进行比较。采用床层深度服务时间(BDST)模型分析实验数据并评估生物吸附柱的性能。评估了生物吸附柱设计所需的BDST模型参数,用于柱中铅、铜和镉的去除。吸附研究后,使用0.1 M盐酸溶液洗脱金属离子对柱进行再生。对柱进行相同金属离子吸附和解吸的重复循环,以评估吸附-解吸后的去除效率。

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