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Experimental Study on Surface Reactions of Heavy Metal Ions With Quartz—Aqueous Ion Concentration Dependence
摘    要:

关 键 词:石英 重金属离子 吸收 水 矿物 表面化学 地球化学

Experimental study on surface reactions of heavy metal ions with Quartz-Aqueous Ion concentration dependence
Wu Honghai,Wu Daqing,Peng Jinlian. Experimental study on surface reactions of heavy metal ions with Quartz-Aqueous Ion concentration dependence[J]. Chinese Journal of Geochemistry, 1999, 18(3): 201-207. DOI: 10.1007/BF02831065
Authors:Wu Honghai  Wu Daqing  Peng Jinlian
Affiliation:(1) Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, 510640 Guangzhou, China
Abstract:Adsorption of divalent metal ions, including Cu2+, Pb2+, Zn2+, Cd2+ and Ni2+, on quartz surface was measured as a function of metal ion concentration at 30°C under conditions of solution pH= 6. 5 and ion strength I = 0. 1mol/L. Results of the experimental measurements can be described very well by adsorption isotherm equations of Freudlich. The correlation coefficients (r) of adsorption isotherm lines are > 0. 96. Moreover, the experimental data were interpreted on the basis of surface complexation model. The experimental results showed that the monodentate-coordinated metal ion surface complex species (SOM+) are predominant over the bidentate-coordinated metal ion surface complex species [(SO)2M] formed only by the ions Cu2+, Zn2+ and Ni2+. And the relevant apparent surface complexation constants are lgKM = 2.2–3.3 in order of KCd≥KPb > KZn > KNi≥KCu, and lgβM = 5.9-6.8 in order of βNi > βZn > βCu. Therefore, the reactive ability of the ions onto mineral surface of quartz follows the order of Cd > Pb > Zn > Ni> Cu under the above-mentioned solution conditions. The apparent surface complexation constants, influenced by the surface potential, surface species and hydrolysis of metal ions, depend mainly on the Born solvation coefficient of the metal ions. This project was financially supported by the National Natural Science Foundation of China (No. 49572091).
Keywords:quartz  heavy metal ion  adsorption  apparent surface complexation constant
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