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Klebsiella sp. 3S1 对水溶液中 Ag(I)的生物吸附。

Biosorption of Ag(I) from aqueous solutions by Klebsiella sp. 3S1.

机构信息

Department of Chemical, Environmental and Materials Engineering, University of Jaén, 23071 Jaén, Spain.

Department of Chemical, Environmental and Materials Engineering, University of Jaén, 23071 Jaén, Spain.

出版信息

J Hazard Mater. 2017 May 5;329:166-177. doi: 10.1016/j.jhazmat.2017.01.044. Epub 2017 Jan 24.

Abstract

This study investigated the potential ability of Klebsiella sp. 3S1 to remove silver cations from aqueous solutions. The selected strain is a ubiquitous bacterium selected from among several microorganisms that had been isolated from wastewaters. To optimise the operating conditions in the biosorption process, a Rotatable Central Composite Experimental Design was developed establishing pH, temperature and biomass concentration as independent variables. Interaction mechanisms involved were analysed through kinetic and equilibrium studies. The experimental results suit pseudo-second order kinetics with two biosorption stages, being the first almost instantly. The Langmuir equilibrium model predicted a maximum capacity of biosorption (q) of 114.1mg Ag/g biomass. The study of the mechanisms involved in the biosorption was completed by employing advanced techniques which revealed that both bacterium-surface interactions and intracellular bioaccumulation participate in silver removal from aqueous solutions. The ability of Klebsiella sp. 3S1 to form silver chloride nanoparticles with interesting potential applications was also discussed.

摘要

本研究考察了 3S1 克雷伯氏菌从水溶液中去除银阳离子的潜在能力。所选菌株是从废水中分离出来的几种微生物中选择的一种普遍存在的细菌。为了优化生物吸附过程中的操作条件,开发了旋转中心组合实验设计,将 pH、温度和生物质浓度作为独立变量。通过动力学和平衡研究分析了涉及的相互作用机制。实验结果符合两个吸附阶段的准二级动力学,第一个阶段几乎瞬间完成。Langmuir 平衡模型预测了生物吸附(q)的最大容量为 114.1mg Ag/g 生物质。通过采用先进技术完成了对生物吸附过程中涉及的机制的研究,结果表明,细菌表面相互作用和细胞内生物积累都参与了从水溶液中去除银。还讨论了 3S1 克雷伯氏菌形成具有有趣潜在应用的氯化银纳米颗粒的能力。

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