Sol-gel hydrothermal synthesis of nano crystalline silicotitanate and its strontium and cesium adsorption
2020
Wang, Rong | Luo, Zhenggang | Tan, Qiuxia | Wang, Rui | Chen, Shuyuan | Shu, Jiancheng | Chen, Mengjun | Xiao, Zhengxue
Crystalline silicotitanate (CST) was synthesized via a sol-gel hydrothermal method using Na₂Si₂O₃·9H₂O and TiCl₄ as silicon and titanium sources. The effects of pH, silicon concentration, hydrothermal temperature, and time on the CST synthesis were studied at a fixed molar ratio of silicon:titanium (0.98:1). Pure nano-CST crystals were synthesized at pH = 12.5, silicon concentration of 5 g L⁻¹, 170 °C for 7 days. The average CST particle size was < 100 nm, with a Sr²⁺/Cs⁺ distribution coefficient up to 1.9 × 10⁶ mL g⁻¹/9.4 × 10³ mL g⁻¹ under the optimum conditions. In addition, nano-CST absorbed Sr²⁺/Cs⁺ over a wide pH range. The nano-CST also displayed a much faster equilibrium time, 4 h, as compared with previous studies. Furthermore, nano-CST adsorption of Sr²⁺/Cs⁺ followed a Langmuir adsorption model and was consistent with pseudo-second-order kinetics.
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