...
首页> 外文期刊>Chemical engineering journal >Enhancing the performance of membrane distillation and ion-exchange manganese oxide for recovery of water and lithium from seawater
【24h】

Enhancing the performance of membrane distillation and ion-exchange manganese oxide for recovery of water and lithium from seawater

机译:提高膜蒸馏和离子交换锰氧化物的性能,从海水中恢复水和锂

获取原文
获取原文并翻译 | 示例
           

摘要

Recovering lithium (Li) from natural sources such as seawater is a sustainable alternative to meet its high demands. Li recovery from seawater must be enhanced to attain economic efficiency. In this work, the potential of enhancing Li recovery from seawater by acid treated manganese oxide ion sieve (HMO) is evaluated by increasing Li concentration in seawater using direct contact membrane distillation (DCMD) and reducing competitive ions. DCMD achieved enhanced water recovery upon pre-treatment with oxalic acid (88-91%) compared to caustic soda ash (65-68%) and without pre-treatment (47-51%). Caustic soda ash required Na addition in alkaline condition for Ca removal, while, oxalic acid removed Ca in acidic condition without any inorganic ion addition. The low ion concentration in acidic condition upon oxalic acid pre-treatment enabled DCMD to concentrate seawater to high levels, increasing Li concentration by 7 times. In Li solution, HMO achieved a maximum adsorptive capacity (Langmuir Q(max)) of 17.8 mg/g in alkaline condition. Multiple cycles of desorption and regeneration of HMO showed only 7-11% decline of Li uptake and minimal Mn dissolution, which, established HMO's reuse capacity. Selective Li mechanism is attributed to H/Li exchange as well as high negative surface charge of HMO. In seawater, Li uptake by HMO reduced by 44-46% due to Mg. Seawater with minimal Mg was favourable for enhancing Li uptake by HMO. Seawater treatment in stages - divalent pre-treament and concentrating seawater, followed by HMO, provided a favourable scenario for attaining high quality water, selective Li recovery, and other resources - Ca and Mg.
机译:从海水等自然来源中回收锂(LI)是可持续的替代方案,以满足其高需求。必须加强海水中李恢复,以获得经济效益。在这项工作中,通过使用直接接触膜蒸馏(DCMD)增加海水中的Li浓度并减少竞争性离子,通过增加海水中锂浓度来评估从海水中加强锂恢复的锂回收。与苛性钠灰(65-68%)和无预处理(47-51%)相比,DCMD通过草酸预处理(88-91%)进行了增强的水回收率。 Caustic Soda灰质需要Na Na Na Na Na NaN加入Ca去除,同时,草酸在酸性条件下除去Ca,没有任何无机离子添加。在草酸预处理后酸性条件下的低离子浓度使DCMD将海水浓缩至高水平,将LI浓度增加7次。在Li溶液中,HMO在碱性条件下实现了17.8mg / g的最大吸附容量(Langmuir Q(Max))。 HMO的多个解吸和再生的多循环显示,Li吸收和最小的Mn溶解的下降仅为7-11%,即设立了HMO的重用容量。选择性Li机制归因于H / LI交换以及HMO的高负面电荷。在海水中,由于Mg,HMO通过HMO吸收44-46%。具有最小MG的海水是有利于HMO增强锂摄取。阶段的海水处理 - Divallent预先进行和集中海水,其次是HMO,为获得高质量的水,选择性李恢复以及其他资源 - CA和MG提供了有利的场景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号