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Preliminary study on recovering lithium from high Mg2+/Li+ ratio brines by electrodialysis

机译:电渗析中高Mg2 + / Li +比猪回收锂的初步研究

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An electrodialysis (ED) system equipped with monovalent selective permeability ion exchange membrane was used to investigate the separation of magnesium and lithium in salt lake brines. Some objective functions including separation coefficient of magnesium and lithium (FMg-Li), recovery ratio of lithium (R-Li) and current efficiency (eta), were applied to explore the effect of the applied voltage, the linear flow velocities, the Mg2+/Li+ ratio and pH on the process of extracting lithium. The results showed that the increase of applied voltage could improve the separation coefficient and the recovery ratio of lithium, but energy consumption would also rise; with the increase of feed linear velocity, the separation coefficient had a rising trend, but too large linear velocity would lead to increasing energy consumption and reducing current efficiency. When the Mg2+/Li+ ratio was in the range of 5-92, ED technology showed higher separation efficiency. Linear flow velocities of concentrating and desalting compartments (1.9-7.6 cm/s) showed positive correlation with the migration of the ions. According to the comprehensive analysis of the experimental results, the optimal operation conditions of the ED device are as follows: the applied voltage (5 V), concentration of electrolyte solution (5 wt% Na2SO4) and the linear velocities of desalting/concentrating/electrolyte (6.2, 6.2 and 3.8 cm/s). When the brine with Mg2+/Li+ ratio of 60 was treated by the ED for 2 h under this condition, the separation coefficient was 12.48. And the recovery ratio of Li+, current efficiency and the Mg2+/Li+ ratio of concentrate was 72.46 wt%, 8.68 wt% and 7, respectively. The concentrate, which could be considered as a bittern with lower Mg2+/Li+ ratio (<8), will be easy to be treated in the subsequent process. (C) 2016 Elsevier B.V. All rights reserved.
机译:配备有单价选择性渗透性离子交换膜的电渗析(ED)系统研究镁和锂盐水中的镁和锂的分离。包括镁和锂(Fmg-Li)分离系数,锂(R-Li)和电流效率(ETA)的分离系数,探讨施加电压,线性流速,Mg2 +的效果/ Li +比例和pH值提取锂的过程。结果表明,施加电压的增加可以提高锂的分离系数和恢复比,但能量消耗也会升高;随着饲料线性速度的增加,分离系数具有上升趋势,但线性速度太大将导致能耗增加和降低电流效率。当Mg2 + / Li +比率在5-92的范围内时,ED技术显示出更高的分离效率。浓缩和脱盐隔室的线性流速(1.9-7.6cm / s)显示与离子的迁移正相关。根据实验结果的综合分析,ED器件的最佳运行条件如下:施加的电压(5V),电解质溶液浓度(5wt%Na 2 SO 4)和脱盐/浓缩/电解质的线性速度(6.2,6.2和3.8 cm / s)。当通过Ed在该条件下由ED处理Mg2 + / Li +比例为60的盐水,分离系数为12.48。和浓缩物的Li +,电流效率和Mg2 + / Li +比的回收率分别为72.46wt%,8.68wt%和7。可以在随后的过程中易于治疗浓缩物,其可以被认为是具有较低Mg2 + / Li +比(<8)的卤水。 (c)2016年Elsevier B.v.保留所有权利。

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