水溶液
吸附
煅烧
化学工程
离子交换
材料科学
筛子(范畴论)
离子
无机化学
分子筛
制作
化学
锂(药物)
过程(计算)
卤水
分离过程
双水相体系
分解
作者
W. F. Mader,Hong Huang,Guang-jin Zhu,Xueqing Wang,Qiaoping Kong,Xueqing Shi
出处
期刊:Processes
[Multidisciplinary Digital Publishing Institute]
日期:2025-09-18
卷期号:13 (9): 2981-2981
被引量:4
摘要
Lithium (Li) ion sieve is considered to have great potential in the selective extraction of Li+ from complex Li+-containing brine owing to its cost-effectiveness, excellent adsorption performance, and environmental friendliness. Nevertheless, the defects of complex regulation and control of technological parameters in the preparation process of Li ion sieve and poor recycling efficiency limit its application. In this study, spinel-type H4Ti5O12 ion sieves (HTO) were successfully prepared through a high-temperature solid-state method for recovering Li+ from aqueous resources. Through the experiment of optimizing the key preparation process parameters of HTO, it was found that the optimum preparation conditions were as follows: lithium ion source of CH3COOLi‧H2O, calcination temperature of 800 °C, and acid (HCl) washing concentration of 0.3 mol/L. The uptake of Li+ by HTO aligned with the pseudo-second-order kinetic model, which was a chemical adsorption process controlled by reversible Li–H ion exchange reaction. HTO exhibited extremely high regeneration cycle characteristics, and after five cycles, it retained 96.06% of its initial adsorption capacity. The present work highlighted that spinel-type HTO has high industrial application potential in the field of Li+ recovery from oilfield brine.
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