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用于浓缩富锂卤水的聚乙烯分离器支撑的薄膜复合正渗透膜

Polyethylene separator supported thin-film composite forward osmosis membranes for concentrating lithium enriched brine.

作者信息

Sun Nan, Dou Pengjia, Zhai Wentao, He Hailong, Nghiem Long D, Vatanpour Vahid, Zhang Yuebiao, Liu Changkun, He Tao

机构信息

Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201210, China; School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China.

College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen 518060, China.

出版信息

Water Res. 2022 Jun 1;216:118297. doi: 10.1016/j.watres.2022.118297. Epub 2022 Mar 14.

Abstract

To extract lithium from salt lake brine involves a process of separation and concentration. After separating lithium from brine, the lithium ion concentration is generally a few hundred mg/L which is far below the required 20-30 g/L (as Li) before precipitation as lithium carbonate. The concentration step of a lithium enriched brine is crucial but highly energy-intensive. Spontaneous forward osmosis (FO) technology offers the possibility for concentrating lithium ions with low energy. Because the concentrating process involves both feed and draw solution with very high salinity, it is highly desirable to have a high performance FO membrane with a low structural parameter as well as a high rejection to ions. In this work, thin polyethylene separator supported FO (PE-FO) membranes were prepared and post-treated stepwise with benzyl alcohol (BA) and hydraulic compaction. The effect of the post-treatment on the FO performance was systematically analyzed. Excellent FO performance was achieved: the water flux and reverse salt flux selectivity were 66.3 LMH and 5.25 L/g, respectively, when the active layer is oriented towards the 0.5 M NaCl draw solution with deionized water as the feed. To the best of our knowledge, this FO flux is the highest ever reported in the open literature under similar test conditions. Applied in concentrating lithium enriched brine, the membrane showed superior water flux using saturated MgCl as draw solution. A new FO model was established to simulate the water flux during the concentration process with good agreement with the experimental results. The promising results using PE-FO membrane for lithium enrichment opens a new frontier for the potential application of FO membranes.

摘要

从盐湖卤水中提取锂涉及分离和浓缩过程。从卤水中分离出锂后,锂离子浓度通常为几百毫克/升,这远低于沉淀碳酸锂所需的20 - 30克/升(以锂计)。富锂卤水的浓缩步骤至关重要但能源密集度高。自发正向渗透(FO)技术为低能耗浓缩锂离子提供了可能性。由于浓缩过程涉及进料液和汲取液的盐度都非常高,因此非常需要具有低结构参数以及高离子截留率的高性能FO膜。在这项工作中,制备了薄的聚乙烯支撑型FO(PE - FO)膜,并用苯甲醇(BA)和液压压实进行了分步后处理。系统分析了后处理对FO性能的影响。实现了优异的FO性能:当活性层朝向以去离子水为进料的0.5 M NaCl汲取液时,水通量和反向盐通量选择性分别为66.3 LMH和5.25 L/g。据我们所知,在类似测试条件下,这种FO通量是公开文献中报道的最高值。将该膜应用于浓缩富锂卤水时,以饱和MgCl作为汲取液,膜表现出优异的水通量。建立了一个新的FO模型来模拟浓缩过程中的水通量,与实验结果吻合良好。使用PE - FO膜进行锂富集的 promising结果为FO膜的潜在应用开辟了新的前沿领域。

原文中“promising”一词拼写错误,正确拼写为“promising”,翻译为“有前景的” 。

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