Selective Lithium Recovery from Seawater Using Crown Ether Resins

Y. Tachibana, Tatsuya Suzuki, M. Nogami, M. Nomura, T. Kaneshiki
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引用次数: 6

Abstract

Seven kinds of crown ether resins embedded in high-porous silica beads, benzo-12-crown-4 (BC12), dibenzo-14-crown-4 (DBC14), benzo-15-crown-5 (BC15), benzo-18-crown-6 (BC18), dibenzo-18-crown-6 (DBC18), dibenzo-21-crown-7 (DBC21), and dibenzo-22-crown-6 (DBC22) resins, were synthesized successfully and the adsorption behavior of Li ion on these crown ether resins have been studied in seawater at room temperature. As a result, it was found that the ascending order of the distribution coefficients (Kd) values of Li ion using the seven crown ether resins are DBC14 < BC12 DBC21 DBC18 < DBC22 < BC18 ≤ BC15 and the BC15 resin has comparatively higher adsorption ability for Li ion. Hence, the adsorption behavior of Li ion using the BC15 resin has been examined in detail. It can be seen that the Kd values of Li ion with the BC15 resin increase sharply with increasing the pH 1.5 to 2.7 in seawater due to the dependence of H for the adsorption reaction. The Kd values of Li ion increased sharply with increasing the concentration factor (CF) of seawater in order of 0.10, 0.20, 0.33, 0.50, 1.0 while the Kd value of CF = 1.5 of seawater decreased certainly. The decrease is attributable to the adsorption reactions between the BC15 resin and the main cationic ions. The tendency indicates that the BC15 resin has wonderful selective adsorption ability for Li ion in the wide concentration range of seawater. In addition, we have examined the thermodynamics (Temp. = 278 333 K) of Li ion on the BC15 resin in seawater by using Van’t Hoff equation. The results also imply that the equilibrium adsorption process between the BC15 resin and Li ion is found to be endothermic and the spontaneous reaction mechanism in nature. From these results, we have proposed that the BC15 resin is available for selective recovery of Li ion from various seawater in the wide temperature range.
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冠醚树脂从海水中选择性回收锂
成功合成了高孔硅珠包埋的7种冠醚树脂:苯并-12-冠-4 (BC12)、二苯并-14-冠-4 (DBC14)、苯并-15-冠-5 (BC15)、苯并-18-冠-6 (BC18)、二苯并-18-冠-6 (DBC18)、二苯并-21-冠-7 (DBC21)和二苯并-22-冠-6 (DBC22),并研究了室温下海水中Li离子在这些冠醚树脂上的吸附行为。结果发现,七种冠醚树脂对Li离子的分布系数Kd值由大到小依次为DBC14 < BC12 DBC21 DBC18 < DBC22 < BC18≤BC15, BC15树脂对Li离子的吸附能力相对较高。因此,详细研究了BC15树脂对Li离子的吸附行为。可以看出,由于吸附反应依赖于H,在海水中,随着pH值1.5 ~ 2.7的增加,Li离子与BC15树脂的Kd值急剧增加。随着海水浓度因子(CF)的增大,Li离子的Kd值急剧增大,依次为0.10、0.20、0.33、0.50、1.0,而海水浓度因子(CF = 1.5)的Kd值则有所下降。减少的原因是BC15树脂与主要阳离子之间的吸附反应。结果表明,BC15树脂在较宽的海水浓度范围内对Li离子具有良好的选择性吸附能力。此外,我们用范霍夫方程考察了海水中Li离子在BC15树脂上的热力学(温度= 278 333 K)。结果还表明,BC15树脂与Li离子的平衡吸附过程是吸热的,本质上是自发反应机制。根据这些结果,我们提出BC15树脂可在较宽的温度范围内选择性地从各种海水中回收Li离子。
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