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蓝藻螺旋藻对Cr3+、Cd2+和Cu2+离子的生物吸附:动力学、平衡及过程机制

Biosorption of Cr3+, Cd2+ and Cu2+ ions by blue-green algae Spirulina sp.: kinetics, equilibrium and the mechanism of the process.

作者信息

Chojnacka Katarzyna, Chojnacki Andrzej, Górecka Helena

机构信息

Institute of Chemical Engineering and Heating Equipment, Wrocław University of Technology, ul. Norwida 4/6, 50-373 Wrocław, Poland.

出版信息

Chemosphere. 2005 Mar;59(1):75-84. doi: 10.1016/j.chemosphere.2004.10.005.

Abstract

The process of biosorption of heavy metal ions (Cr3+, Cd2+, Cu2+) by blue-green algae Spirulina sp. is discussed in this paper. Spirulina sp. was found to be a very efficient biosorbent. The aim of the present study was to investigate quantitatively the potential binding sites present at the surface of Spirulina sp., using both potentiometric titrations and adsorption isotherms. The kinetic experiments showed that the process equilibrium was reached quickly, in less than 5-10 min. It was found that the equilibrium dependence between biosorption capacity and bulk metal ion concentration could be described with Langmuir equation. This suggests that the mechanism of biosorption is rather chemisorption than physical adsorption and was further confirmed by the low surface area associated with physical adsorption and by the presence of cations that appeared in the solution after biosorption. The maximum contribution of physical adsorption in the overall biosorption process was evaluated as 3.7%. It was proposed that functional groups on the cell surface contributed to the binding of metal ions by a biosorbent via equilibrium reaction. Three functional groups capable of cation exchange were identified on the cell surface. The biomass was described as weakly acidic ion exchanger. Since deprotonation of each functional group depends on pH, the process of biosorption is strongly pH-dependent. This was confirmed in the biosorption experiments carried out at different pH. The contribution of functional groups in the biosorption process was confirmed by chemical modification of the groups. Chemically blocked groups did not show neither biosorption nor ion-exchange capabilities. It has been shown that growth conditions can affect the metal adsorption properties of microalgae. The paper also discusses desorption characteristics of the biosorbent. The criteria for desorption were high elution efficiency and preservation of biosorptive properties. Desorbent that possessed these characteristics was nitric acid.

摘要

本文讨论了蓝藻螺旋藻对重金属离子(Cr3+、Cd2+、Cu2+)的生物吸附过程。发现螺旋藻是一种非常有效的生物吸附剂。本研究的目的是通过电位滴定和吸附等温线定量研究螺旋藻表面存在的潜在结合位点。动力学实验表明,该过程在不到5-10分钟内迅速达到平衡。发现生物吸附容量与本体金属离子浓度之间的平衡关系可用朗缪尔方程描述。这表明生物吸附机制是化学吸附而非物理吸附,这一点通过与物理吸附相关的低比表面积以及生物吸附后溶液中出现的阳离子得到进一步证实。物理吸附在整个生物吸附过程中的最大贡献评估为3.7%。有人提出,细胞表面的官能团通过平衡反应促进生物吸附剂与金属离子的结合。在细胞表面鉴定出三个能够进行阳离子交换的官能团。该生物质被描述为弱酸性离子交换剂。由于每个官能团的去质子化取决于pH值,生物吸附过程强烈依赖于pH值。这在不同pH值下进行的生物吸附实验中得到了证实。官能团在生物吸附过程中的作用通过对这些基团的化学修饰得到了证实。化学封闭的基团既不显示生物吸附能力也不显示离子交换能力。研究表明,生长条件会影响微藻对金属的吸附特性。本文还讨论了生物吸附剂的解吸特性。解吸的标准是高洗脱效率和生物吸附性能的保留。具有这些特性的解吸剂是硝酸。

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