Ding Yaxuan, Nhung Nguyen Thi Hong, An Jiahao, Chen Hao, Liao Lianying, He Chunlin, Wang Xinpeng, Fujita Toyohisa
School of Resources, Environment and Materials, Guangxi University, Nanning 530004, China.
Materials (Basel). 2023 Jun 5;16(11):4190. doi: 10.3390/ma16114190.
Lithium recovery is imperative to accommodate the increase in lithium demand. Salt lake brine contains a large amount of lithium and is one of the most important sources of lithium metal. In this study, LiCO, MnO, and TiO particles were mixed, and the precursor of a manganese-titanium mixed ion sieve (M-T-LIS) was prepared by a high-temperature solid-phase method. M-T-LISs were obtained by DL-malic acid pickling. The adsorption experiment results noted single-layer chemical adsorption and maximum lithium adsorption of 32.32 mg/g. From the Brunauer-Emmett-Teller and scanning electron microscopy results, the M-T-LIS provided adsorption sites after DL-malic acid pickling. In addition, X-ray photoelectron spectroscopy and Fourier transform infrared results showed the ion exchange mechanism of the M-T-LIS adsorption. From the results of the Li desorption experiment and recoverability experiment, DL-malic acid was used to desorb Li from the M-T-LIS with a desorption rate of more than 90%. During the fifth cycle, the Li adsorption capacity of the M-T-LIS was more than 20 mg/g (25.90 mg/g), and the recovery efficiency was higher than 80% (81.42%). According to the selectivity experiment, the M-T-LIS had good selectivity for Li (adsorption capacity of 25.85 mg/g in the artificial salt lake brine), which indicates its good application potential.
锂回收对于满足锂需求的增长至关重要。盐湖卤水含有大量锂,是锂金属最重要的来源之一。在本研究中,将碳酸锂、二氧化锰和二氧化钛颗粒混合,通过高温固相法制备了锰钛混合离子筛(M-T-LIS)的前驱体。通过DL-苹果酸酸洗获得M-T-LIS。吸附实验结果表明为单层化学吸附,最大锂吸附量为32.32mg/g。从布鲁诺尔-埃米特-泰勒(Brunauer-Emmett-Teller)和扫描电子显微镜结果来看,DL-苹果酸酸洗后M-T-LIS提供了吸附位点。此外,X射线光电子能谱和傅里叶变换红外结果显示了M-T-LIS吸附的离子交换机制。从锂解吸实验和回收率实验结果来看,使用DL-苹果酸从M-T-LIS中解吸锂,解吸率超过90%。在第五个循环中,M-T-LIS的锂吸附容量超过20mg/g(25.90mg/g),回收效率高于80%(81.42%)。根据选择性实验,M-T-LIS对锂具有良好的选择性(在人工盐湖卤水中的吸附容量为25.85mg/g),这表明其具有良好的应用潜力。