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通过丝状菌(浅灰链霉菌)的菌丝体生物量对铝的吸附的平衡、动力学和热力学研究。

Equilibrium, kinetic and thermodynamic studies on aluminum biosorption by a mycelial biomass (Streptomyces rimosus).

机构信息

Laboratory of Environmental Biotechnologies and Process Engineering, BIOGEP, Polytechnic National School of Algiers, Hacen Badi, El Harrach, Algiers, Algeria.

出版信息

J Hazard Mater. 2010 Nov 15;183(1-3):35-43. doi: 10.1016/j.jhazmat.2010.06.078. Epub 2010 Jul 1.

Abstract

This work focused on kinetic, equilibrium and thermodynamic studies on aluminum biosorption by Streptomyces rimosus biomass. Infrared spectroscopy analysis shows that S. rimosus present some groups: hydroxyl, methyl, carboxyl, amine, thiol and phosphate. The maximum biosorption capacity of S. rimosus biomass was found to be 11.76 mg g(-1) for the following optimum conditions: particle size, [250-560] μm, pH 4-4.25, biomass content of 25 g L(-1), agitation of 250 rpm and temperature of 25 °C. Langmuir, Freundlich and Dubinin-Radushkevich (D-R) models were applied to describe the biosorption isotherms at free pH (pH(i) 4) and fixed pH (pH(f) 4). Langmuir model is the most adequate. With fixed pH, the maximum biosorption capacity is enhanced from 6.62 mg g(-1) to 11.76 mg g(-1). The thermodynamic parameters (ΔG°, ΔH° and ΔS°) showed the feasibility, endothermic and spontaneous nature of the biosorption at 10-80 °C. The activation energy (Ea) was determined as 52.18 kJ mol(-1) using the Arrhenius equation and the rate constant of pseudo-second-order model (the most adequate kinetic model). The mean free energy was calculated as 12.91 kJ mol(-1) using the D-R isotherm model. The mechanism of Al(III) biosorption on S. rimosus could be a chemical ion exchange and carboxyl groups are mainly involved in this mechanism.

摘要

本工作主要研究了 Streptomyces rimosus 生物量对铝的生物吸附的动力学、平衡和热力学研究。红外光谱分析表明,S. rimosus 存在一些基团:羟基、甲基、羧基、胺、巯基和磷酸盐。在以下最佳条件下,S. rimosus 生物质的最大吸附容量被发现为 11.76mg g(-1):粒径为[250-560]μm,pH 值为 4-4.25,生物质含量为 25gL(-1),搅拌速度为 250rpm,温度为 25°C。在自由 pH 值(pH(i) 4)和固定 pH 值(pH(f) 4)下,应用 Langmuir、Freundlich 和 Dubinin-Radushkevich(D-R)模型描述生物吸附等温线。Langmuir 模型是最合适的。在固定 pH 值的情况下,最大吸附容量从 6.62mg g(-1)提高到 11.76mg g(-1)。热力学参数(ΔG°、ΔH°和ΔS°)表明,在 10-80°C 下,生物吸附是可行的、吸热的和自发的。通过 Arrhenius 方程确定了活化能(Ea)为 52.18kJ mol(-1),采用准二级动力学模型(最合适的动力学模型)确定了速率常数。使用 D-R 等温线模型计算得到平均自由能为 12.91kJ mol(-1)。Al(III)在 S. rimosus 上的生物吸附机制可能是一种化学离子交换,羧基基团主要参与了这种机制。

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