化学
吸附
离子
分子筛
解吸
扩散
无机化学
选择性
锂(药物)
朗缪尔吸附模型
卤水
物理化学
有机化学
催化作用
热力学
内分泌学
物理
医学
作者
Shulei Wang,Ping Li,Xin Zhang,Shili Zheng,Yi Zhang
标识
DOI:10.1016/j.hydromet.2017.09.009
摘要
The prepared titanium type lithium ion sieve HxTiO3 are characterized and tested as adsorbents for selective adsorption of lithium from high Mg-containing brine. The maximum adsorption capacities of Li+, Na+, K+, Ca2 + and Mg2 + ions onto HxTiO3 reached 36.34, 1.93, 1.99, 2.58 and 3.53 mg/g, respectively, under the initial pH 8.8 at 25 °C for 24 h. Adsorption isotherms and kinetic analysis indicated that the adsorption of Li+ ions and other cations onto HxTiO3 followed Langmuir isotherm model and pseudo-second order kinetic equation. A diffusion model simulation showed that the Li+ ions had the highest external diffusion coefficients (7.7 × 10− 2 cm s− 1) while the other cations had small effect on the adsorption rate of Li+. The Biot number was > 100 signified that these ions adsorption onto HxTiO3 were controlled by the internal diffusion. The separation factors (α) of Li+ over other cations were much > 1. In particular, the α value of Li+ over Mg2 + reached 4783, indicating the high selectivity for Li+. In addition, the Li+ ion adsorption capacity kept constant during the six adsorption-desorption cycles and molar ratio of Mg to Li of eluents was as low as 0.08, indicating that the HxTiO3 ion sieve could effectively extract Li+ from the enriched brine.
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