Experimental Study of the Co-adsorption of Cadmium and Citrate Ions onto a TiO sub(2) (Anatase)/Electrolyte Solution Interface
A study of the co-adsorption of cadmium and citrate ions onto the mono-dispersed TiO sub(2) (anatase)/NaClO sub(4) aqueous solution interface is presented. The influence of ionic strength and pH on the adsorption of cadmium and citrate ions in this system was investigated. The surface charge density...
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Veröffentlicht in: | Adsorption science & technology 2008-10, Vol.26 (8), p.599-612 |
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description | A study of the co-adsorption of cadmium and citrate ions onto the mono-dispersed TiO sub(2) (anatase)/NaClO sub(4) aqueous solution interface is presented. The influence of ionic strength and pH on the adsorption of cadmium and citrate ions in this system was investigated. The surface charge density, the zeta -potential and adsorption-edge (or envelope) parameters such as pH sub(50%) and Delta pH sub(10-90%) were also determined for different concentrations of adsorbed ions. The presence of citrate anions increased the adsorption of Cd(II) ions at low pH values but led to a corresponding decrease at high pH values. The influence of pH on the shapes of the corresponding adsorption isotherms for citrate anions was characteristic of that for anion adsorption onto metal oxides; this is referred to as the "adsorption envelope". |
doi_str_mv | 10.1260/026361708788059875 |
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The influence of ionic strength and pH on the adsorption of cadmium and citrate ions in this system was investigated. The surface charge density, the zeta -potential and adsorption-edge (or envelope) parameters such as pH sub(50%) and Delta pH sub(10-90%) were also determined for different concentrations of adsorbed ions. The presence of citrate anions increased the adsorption of Cd(II) ions at low pH values but led to a corresponding decrease at high pH values. 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The influence of ionic strength and pH on the adsorption of cadmium and citrate ions in this system was investigated. The surface charge density, the zeta -potential and adsorption-edge (or envelope) parameters such as pH sub(50%) and Delta pH sub(10-90%) were also determined for different concentrations of adsorbed ions. The presence of citrate anions increased the adsorption of Cd(II) ions at low pH values but led to a corresponding decrease at high pH values. 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The influence of ionic strength and pH on the adsorption of cadmium and citrate ions in this system was investigated. The surface charge density, the zeta -potential and adsorption-edge (or envelope) parameters such as pH sub(50%) and Delta pH sub(10-90%) were also determined for different concentrations of adsorbed ions. The presence of citrate anions increased the adsorption of Cd(II) ions at low pH values but led to a corresponding decrease at high pH values. The influence of pH on the shapes of the corresponding adsorption isotherms for citrate anions was characteristic of that for anion adsorption onto metal oxides; this is referred to as the "adsorption envelope".</abstract><doi>10.1260/026361708788059875</doi></addata></record> |
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subjects | Adsorption Anatase Cadmium Citrates Density Surface chemistry Titanium dioxide |
title | Experimental Study of the Co-adsorption of Cadmium and Citrate Ions onto a TiO sub(2) (Anatase)/Electrolyte Solution Interface |
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