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固相法合成钴掺杂锰系锂离子筛的吸附性能

涂玉鑫 李田玉 李吉青 陈佳煌 关利聪 王瑞祥 徐志峰 刘志楼

工程科学学报2025,Vol.47Issue(1):44-55,12.
工程科学学报2025,Vol.47Issue(1):44-55,12.DOI:10.13374/j.issn2095-9389.2024.05.10.004

固相法合成钴掺杂锰系锂离子筛的吸附性能

Lithium adsorption performance of Co-doped manganese-based lithium-ion sieves prepared via solid-phase synthesis

涂玉鑫 1李田玉 2李吉青 1陈佳煌 1关利聪 1王瑞祥 1徐志峰 3刘志楼1

作者信息

  • 1. 江西理工大学冶金工程学院,赣州 341000
  • 2. 黑龙江紫金铜业有限公司,齐齐哈尔 161000
  • 3. 江西应用技术职业学院,赣州 341000
  • 折叠

摘要

Abstract

With the rapid development of 5G/6G communications,new energy vehicles,and lithium battery industries,the demand for lithium compounds(especially Li2CO3)has dramatically increased in recent years.Many countries have regarded lithium as a strategic mineral resource.Lithium is mainly found in liquid mineral resources around the world,and the extraction of lithium from the mother liquor of lithium precipitates has thus garnered significant attention.The main methods for recovering lithium from solutions include membrane separation,solvent extraction,electrochemistry,and adsorption.Among them,the adsorption method is one of the most promising.The key to successful adsorption technology is the construction of high-performance adsorbents with high adsorption capacity,high ionic selectivity,and high structural stability.The manganese-ion sieve named as LMO,is a promising adsorbent that has been widely studied because of its good chemical stability,excellent adsorption properties,and outstanding ion selectivity for lithium extraction.However,its inherent dissolution loss greatly restricts its practical application.To reduce the dissolution loss of manganese-ion sieves,several strategies,such as adjusting the synthesis process,composition optimization,ion doping,and surface modification,were adopted.This study introduces Co3+doping to mitigate manganese loss in LMO,resulting in the preparation of cobalt-doped manganese-based ion sieves(LCMO).LCMOs prepared at various calcination temperatures and times were characterized using X-ray diffraction(XRD),scanning electron microscopy(SEM),transmission electron microscopy,and X-ray photoelectron spectroscopy(XPS).The XRD characterization results indicate that Co doping has no effect on the spinel structure of LMO.The SEM results confirmed the successful doping and uniform Co distribution in LCMO-5%.The XPS results show that a Co doping molar fraction of 5%can reduce the content of Mn3+from 9.67%in the undoped precursor to 3.63%,which may be because the partial substitution of Mn3+by Co3+reduces the proportion of Mn3+.The lithium adsorption capacity increased from 39.299 to 41.708 mg·g-1,and the manganese dissolution significantly decreased from 1.288%to 0.84%.The performance improvement of the LCMO greatly promotes the practical application of manganese-based ion sieves.The prepared 5%molar fraction of the Co-doped ion sieve(LCMO-5%)exhibited excellent cycling performance,and the adsorption efficiency of Li+remained above 81%after five cycles.In the simulated lithium precipitation mother liquor,the separation coefficients of Li/Na and Li/K were 74.655 and 64.547,respectively,indicating that LCMO-5%effectively adsorbed Li+from solutions containing high concentrations of Na+and K+.Therefore,the LCMO-5%ion sieve exhibits outstanding application prospects for Li+extraction from liquid lithium resources.

关键词

锂离子筛/钴掺杂/锰溶损/吸附/含锂溶液

Key words

lithium ion sieve/Co doping/manganese dissolution loss/adsorption/lithium precipitation mother liquor

分类

轻工业

引用本文复制引用

涂玉鑫,李田玉,李吉青,陈佳煌,关利聪,王瑞祥,徐志峰,刘志楼..固相法合成钴掺杂锰系锂离子筛的吸附性能[J].工程科学学报,2025,47(1):44-55,12.

基金项目

国家自然科学基金资助项目(52374413,52174334) (52374413,52174334)

江西省双千计划资助项目(jxsq2023201087,jxsq2019201040) (jxsq2023201087,jxsq2019201040)

江西省杰出青年基金资助项目(20224ACB214009,20212ACB204015) (20224ACB214009,20212ACB204015)

工程科学学报

OA北大核心

2095-9389

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