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铅、镉、铜、锌和钡对淡水表面涂层吸附情况的比较

Comparison of the adsorption of lead, cadmium, copper, zinc and barium to freshwater surface coatings.

作者信息

Dong Deming, Li Yu, Zhang Jingjing, Hua Xiuyi

机构信息

Department of Environmental Science, College of Environment and Resources, Jilin University, 115 Jiefang Road, Changchun 130023, PR China.

出版信息

Chemosphere. 2003 May;51(5):369-73. doi: 10.1016/S0045-6535(02)00835-4.

Abstract

Measurements were made regarding the adsorption of lead, cadmium, copper, zinc and barium to freshwater surface coatings (biofilms and associated minerals), which were collected in Nanhu Lake in Jilin Province, PR China, in order to investigate the variability of adsorption capacities of these heavy metals mentioned in the above surface coatings. The adsorption of lead and other heavy metals to the biofilms was observed to decrease in the following order: copper, lead, zinc, cadmium, and barium. Generally, the values of Gamma(max) (the maximum adsorption, micromol/m(2)) increased with the standard electrode potential of metal elements used and were recorded as 166.7, 40.0, 29.4, 10.8, and 1.8 for copper, lead, zinc, cadmium and barium, respectively. The values of 1/Gamma(max) increased linearly with the decrease in values of the standard electrode potential of metal elements with a significant correlation (n=5, p=0.01) and increased linearly with the increase in values of covalent radius of metal elements with a significant correlation (n=5, p=0.05). This indicates that standard electrode potential and covalent radius were two of the principal characteristics of metals employed, causing the variation of lead and other heavy metal adsorption to the surface coatings.

摘要

对中国吉林省南湖采集的淡水表面涂层(生物膜及相关矿物质)对铅、镉、铜、锌和钡的吸附进行了测量,以研究上述表面涂层中这些重金属吸附能力的变化。观察到铅和其他重金属在生物膜上的吸附顺序为:铜、铅、锌、镉和钡。一般来说,Γ(max)(最大吸附量,微摩尔/平方米)的值随着所使用金属元素的标准电极电位升高而增加,铜、铅、锌、镉和钡的Γ(max)值分别记录为166.7、40.0、29.4、10.8和1.8。1/Γ(max)的值随着金属元素标准电极电位值的降低呈线性增加,具有显著相关性(n = 5,p = 0.01),并且随着金属元素共价半径值的增加呈线性增加,具有显著相关性(n = 5,p = 0.05)。这表明标准电极电位和共价半径是所使用金属的两个主要特性,导致铅和其他重金属在表面涂层上的吸附发生变化。

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