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从锂蒙脱石矿石中进行电化学提锂

Electrochemical lithium extraction from hectorite ore.

作者信息

Haddad Andrew Z, Cha Hyungyeon, McDonough Liam, Dun Chaochao, Pohlman Garrett, Urban Jeffrey J, Kostecki Robert

机构信息

Energy Storage and Distributed Resources Division, Lawrence Berkeley National Laboratory, Berkeley, CA, USA.

The Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley, CA, USA.

出版信息

Commun Chem. 2024 Dec 3;7(1):285. doi: 10.1038/s42004-024-01378-x.

Abstract

Electrochemical technologies add a unique dimension for ore refinement, representing tunable methods that can integrate with renewable energy sources and existing downstream process flows. However, the development of electrochemical extraction technologies has been impeded by the technological maturity of hydro- and pyro-metallurgy, as well as the electrical insulating properties of many metal oxide ores. The fabrication and use of carbon/insulating material composite electrodes has been a longstanding method to enable electrochemical activation. Here, using real hectorite ore, we employ this technical approach to fabricate hectorite-carbon black composite electrodes (HCCEs) and achieve electrochemical activation of hectorite. Anodic polarization results in lithium-ion release through a multi-step chemical and electrochemical mechanism that results in 50.7 ± 4.4% removal of lithium from HCCE, alongside other alkaline ions. This technical proof-of-concept study underscores that electrochemical activation of ores can facilitate lattice deterioration and ion removal from ores.

摘要

电化学技术为矿石提纯增添了独特的维度,代表了可与可再生能源和现有下游工艺流程相结合的可调方法。然而,电化学提取技术的发展受到湿法冶金和火法冶金技术成熟度以及许多金属氧化物矿石的电绝缘特性的阻碍。碳/绝缘材料复合电极的制造和使用一直是实现电化学活化的方法。在此,我们使用真实的锂蒙脱石矿石,采用这种技术方法制造锂蒙脱石-炭黑复合电极(HCCE),并实现锂蒙脱石的电化学活化。阳极极化通过多步化学和电化学机制导致锂离子释放,这使得锂从HCCE中去除50.7±4.4%,同时还有其他碱性离子。这项概念验证技术研究强调,矿石的电化学活化可以促进晶格劣化和离子从矿石中去除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/810d/11614861/05f89c508d22/42004_2024_1378_Fig1_HTML.jpg

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