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首页> 外文期刊>Chemical engineering journal >Magnetically separable magnetite-lithium manganese oxide nanocomposites as reusable lithium adsorbents in aqueous lithium resources
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Magnetically separable magnetite-lithium manganese oxide nanocomposites as reusable lithium adsorbents in aqueous lithium resources

机译:磁可分离磁铁矿-锂锰氧化物纳米复合材料作为锂水溶液中可重复使用的锂吸附剂

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摘要

Spinel-structured lithium manganese oxides (LMOs) have generated considerable interest as adsorbents for the recovery of Li ions from aqueous Li resources such as brine, seawater, and concentrated seawater. However, practical applications are limited because powdered adsorbents are hard to handle and separate from a liquid. To overcome this problem, magnetically separable magnetite-LMO composite adsorbents (M-LMOs) were prepared by growing magnetite on LMO. The morphologies, crystal structures, chemical compositions, and magnetic properties of the prepared materials were characterized using various analytical techniques. The results confirmed that M-LMO had a spinel structure and contained two crystal phases. Li+ adsorption experiments were conducted using acid-treated M-LMO (M-HMO). The results confirmed that M-HMO was reusable and selectively adsorbed Li+ in the presence of Na+, K+, and Mg2+; the Li+ adsorption capacity was 6.84 mg/g in LiCI buffer solution and 1.2 mg/g in concentrated seawater, which is a much harsher condition than brine or seawater. M-HMO was conveniently separated from a liquid under an external magnetic field after Li+ adsorption. This is significantly different from conventional Li+ recovery systems such as granulation, foam formation, and membranization. These findings indicate that M-LMO could be used for Li+ recovery from aqueous Li resources and has good potential for practical applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:尖晶石结构的锂锰氧化物(LMOs)作为吸附剂,可从卤水,海水和浓海水等含水锂资源中回收锂离子,引起了人们的极大兴趣。但是,由于粉末状的吸附剂难以处理和与液体分离,因此实际应用受到限制。为了克服这个问题,通过在LMO上生长磁铁矿来制备磁性可分离的磁铁矿-LMO复合吸附剂(M-LMOs)。使用各种分析技术对制备材料的形貌,晶体结构,化学成分和磁性进行了表征。结果证实,M-LMO具有尖晶石结构并且包含两个晶相。使用酸处理的M-LMO(M-HMO)进行Li +吸附实验。结果证实,在Na +,K +和Mg2 +存在下,M-HMO可重复使用并选择性吸附Li +。 LiCl缓冲溶液中的Li +吸附容量为6.84 mg / g,浓海水中的Li +吸附容量为1.2 mg / g,这比盐水或海水要苛刻得多。在Li +吸附之后,M-HMO可方便地在外部磁场下与液体分离。这与常规的Li +回收系统(例如制粒,泡沫形成和膜化)明显不同。这些发现表明,M-LMO可用于从含水Li资源中回收Li +,并且在实际应用中具有良好的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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