Adsorption Kinetics of Au(III) Ions on a Novel Chelating Resin Silica-Gel Functionalized by an Amino Organophosphonic Acid

Author:

Yin Ping1,Tian Yuan1,Qu Rongjun1,Zhang Jiang1

Affiliation:

1. School of Chemistry and Materials Science, Ludong University, Yantai 264025, P.R. China

Abstract

The adsorption kinetics of Au(III) on a novel chelating resin namely silica gel functionalized by an amino phosphonic acid (denoted as SiO2–EDA–APA) were studied. The results showed that SiO2–EDA–APA could reach its saturation adsorption capacity within 4 h, and its excellent adsorption capacity for Au(III) was 234.61 mg g −1 when the initial solution concentration was 2.0 mmol L −1 at 35°C. The adsorption kinetics of the as-synthesized hybrid adsorbent for Au(III) at different temperatures can be modelled closely by a pseudo second-order rate equation. The thermodynamic parameters of adsorption, Δ G, Δ H and Δ S were – 18.89 kJ mol −1, 19.82 kJ mol −1, and 125.74 J K−1 mol −1, respectively. It can be concluded that the adsorption of Au(III) on SiO2–EDA–APA is a spontaneous, endotherminc process controlled by film diffusion, which results in its higher adsorption capacity at higher temperatures.

Publisher

SAGE Publications

Subject

Physical and Theoretical Chemistry

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