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Role of Iron(III) and Aluminum Hydroxides in Concentration/reduction of Au(III) Complexes
Authors:Akiko UCHIDA  Takushi YOKOYAMA  Yoshinobu MOTOMURA  Akane MIYAZAKI  Yoshihiro OKAUE  Koichiro WATANABE  Eiji IZAWA
Affiliation:Department of Earth Resources Engineering, Faculty of Engineering, Kyushu University, Hakozaki, Higashi—ku, Fukuoka 812–8581, Japan [e-mail: ];Department of Chemistry, Faculty of Science, Kyushu University, Ropponmatsu, Chuo—ku, Fukuoka 810–8560, Japan;Department of Earth and Planetary Sciences, Faculty of Science, Kyushu University, Hakozaki, Higashi—ku, Fukuoka 812–8581, Japan;Department of Environmental Chemistry and Engineering, Interdisciplinary Graduate School of Science and Engineering, Tokyo Institute of Technology, 4259 Nagatsuta, Midori—ku, Yokohama 226–8502, Japan
Abstract:Abstract: The adsorption of gold on iron(III) and aluminum hydroxides from solutions containing Au(III) complexes has been studied as a function of pH and chloride concentration at 30C. Iron(III) hydroxide was more effective in adsorbing gold from solution than aluminum hydroxide. However, both hydroxides controlled the behavior of Au(III) complex with very similar manner. The most effective gold adsorption occurred in aqueous solution with near neutral pH and low Cl concentration. In this solution condition, Au(III) complexes were mainly dissolved as AuCl2(OH)2- and AuCl(OH)3-, and the surface charge for both hydroxides was positive. In addition, the adsorbed Au(III) complexes were spontaneously reduced to elemental gold in spite of the absence of a specific reducing agent.
The results of this study suggest that adsorption and spontaneous reduction of gold complexes on the surface of hydrous metal oxides with positive charge play an important role in gold precipitation in subsurface environment.
Keywords:Au(III) complex    iron(III) hydroxide    aluminum hydroxide    adsorption    spontaneous reduction
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