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马尾藻属死生物质对镉的生物吸附过程中的动力学建模与平衡研究。

Kinetic modeling and equilibrium studies during cadmium biosorption by dead Sargassum sp. biomass.

作者信息

Cruz Claudio C V, da Costa Antonio Carlos A, Henriques Cristiane Assumpção, Luna Aderval S

机构信息

Department of Analytical Chemistry, Institute of Chemistry, Rio de Janeiro State University, Rua São Francisco Xavier 524, 20559-900, Rio de Janeiro, Brazil.

出版信息

Bioresour Technol. 2004 Feb;91(3):249-57. doi: 10.1016/s0960-8524(03)00194-9.

Abstract

A basic investigation on the removal of cadmium(II) ions from aqueous solutions by dead Sargassum sp. was conducted in batch conditions. The influence of different experimental parameters; initial pH, shaking rate, sorption time, temperature and initial concentrations of cadmium ions on cadmium uptake was evaluated. Results indicated that cadmium uptake could be described by the Langmuir adsorption model, being the monolayer capacity negatively affected with an increase in temperature. Analogously, the adsorption equilibrium constant decreased with increasing temperature. The kinetics of the adsorption process followed a second-order adsorption, with characteristic constants increasing with increasing temperature. Activation energy of biosorption could be calculated as equal to 10 kcal/mol. The biomass used proved to be suitable for removal of cadmium from dilute solutions. Its maximum uptake capacity was 120 mg/g. It can be considered an optimal result when compared to conventional adsorbing materials. Thus Sargassum sp. has great potential for removing cadmium ions especially when concentration of this metal is low in samples such as wastewater streams.

摘要

在间歇条件下,对死亡的马尾藻属海藻从水溶液中去除镉(II)离子进行了基础研究。评估了不同实验参数(初始pH值、振荡速率、吸附时间、温度和镉离子初始浓度)对镉吸附量的影响。结果表明,镉的吸附可用朗缪尔吸附模型描述,随着温度升高,单层吸附容量受到负面影响。类似地,吸附平衡常数随温度升高而降低。吸附过程的动力学遵循二级吸附,特征常数随温度升高而增加。生物吸附的活化能计算为等于10千卡/摩尔。所使用的生物质被证明适用于从稀溶液中去除镉。其最大吸附容量为120毫克/克。与传统吸附材料相比,这可被视为一个最佳结果。因此,马尾藻属海藻在去除镉离子方面具有很大潜力,特别是当废水中该金属浓度较低时。

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