Thermodynamic and Kinetic Modeling the Interaction of Goethite-Ligand-Metal Ternary System

30 Pages Posted: 27 Nov 2021

See all articles by Zipeng Li

Zipeng Li

Nanjing University

Xiaopeng Zhao

Nanjing University

Xueyuan Gu

Nanjing University

Abstract

Low-molecular-weight organic acids may significantly influence the mobility of metal in environment, but the kinetics are not fully understood and have not been quantified. In this study, the thermodynamic and kinetic effects of citric acid (CA) on the adsorption of Cd(II) and Ni(II) on goethite were investigated using batch-adsorption and stirred-flow experiments. A CD-MUSIC model and a thermodynamically based multi-rate kinetic model were employed to describe the adsorption behaviors. Two ternary surface complexes, (≡FeO)2CitMe and (≡FeOH)2MeCit2−, were involved in adsorption. In addition, CA differed in its effects on Cd(II) and Ni(II) adsorption, enhancing Cd(II) adsorption but inhibiting Ni(II) adsorption at high levels. Kinetically, in the presence of CA, the adsorption of Cd(II) was faster than that of Ni(II). Increasing CA concentration led to faster Cd(II) adsorption, but resulted in the dissolution of the adsorbed Ni(II), possibly due to the much higher complexation constants of Ni-CA than of Cd-CA in aqueous phase. This finding implied that, in the rhizosphere, high level of CA may lead to more dissolution of Ni(II) than Cd(II); while in acidic ferrosol, CA may alleviate Cd(II) mobility and toxicity. The proposed mechanistic model sheds light on ion partition in the soil environment and may improve predictions thereof.

Keywords: CD-MUSIC Model, Kinetic Model, Ternary Species, Overshooting, Undershooting

Suggested Citation

Li, Zipeng and Zhao, Xiaopeng and Gu, Xueyuan, Thermodynamic and Kinetic Modeling the Interaction of Goethite-Ligand-Metal Ternary System. Available at SSRN: https://ssrn.com/abstract=3972734 or http://dx.doi.org/10.2139/ssrn.3972734

Zipeng Li

Nanjing University ( email )

Nanjing
China

Xiaopeng Zhao

Nanjing University ( email )

Nanjing
China

Xueyuan Gu (Contact Author)

Nanjing University ( email )

Nanjing
China

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