School of Metallurgy and Environment, Central South University, Changsha 410083, China.
School of Metallurgy and Environment, Central South University, Changsha 410083, China.
Waste Manag. 2024 Feb 15;174:362-370. doi: 10.1016/j.wasman.2023.12.019. Epub 2023 Dec 14.
Large amounts of titanium white waste are generated in the production of titanium dioxide using sulphate method, which in turn can be used to prepare LiFePO cathode material, thereby reducing environmental risks and achieving resource recovery. However, a key challenge lies in the elimination of impurities. In this work, a cost-efficient and straightforward approach based on phase transformation during hydrothermal treatment was proposed to utilize titanium white waste with calcium dihydrogen phosphate for the preparation of LiFePO cathode material. The content of Fe in the leachate was enriched to 81.5 g/L after purification, while 99.9 % of Ti and 98.36 % of Al and were successfully removed. In the subsequent process for Fe/P mother liquor preparation, the losses of Fe and P were only 5.82 % and 2.81 %, respectively. The Fe and P contents of the synthesized FePO product were 29.47 % and 17.08 %, respectively, and the Fe/P molar ratio was 0.986. Crystal phase of the product matched well with standard iron phosphate, and the lamellar microstructure of FePO was uniform with the particle size ranging from 3 to 5 μm. Moreover, the contents of impurities in the product were far below the standard. The initial discharge of LiFePO synthesized by the iron phosphate was 160.6 mAhg at 0.1C and maintained good reversible capacity after 100 cycles. This work may provide new strategy for preparing LiFePO cathode material from industrial solid waste.
大量的钛白废料是在硫酸法生产二氧化钛过程中产生的,而这些废料可以用来制备 LiFePO 阴极材料,从而降低环境风险并实现资源回收。然而,一个关键的挑战在于去除杂质。在这项工作中,提出了一种基于水热处理过程中相变的低成本、简单方法,利用钛白废料和磷酸二氢钙制备 LiFePO 阴极材料。经过净化后,浸出液中 Fe 的含量富集到 81.5 g/L,而 Ti 和 Al 的去除率分别达到 99.9%和 98.36%。在随后的 Fe/P 母液制备过程中,Fe 和 P 的损失分别仅为 5.82%和 2.81%。合成的 FePO 产物中 Fe 和 P 的含量分别为 29.47%和 17.08%,Fe/P 摩尔比为 0.986。产物的晶体相与标准磷酸铁很好地匹配,FePO 的层状微结构均匀,粒径范围为 3 至 5 μm。此外,产物中的杂质含量远低于标准。由该磷酸铁合成的 LiFePO 的初始放电容量在 0.1C 时为 160.6 mAhg,经过 100 次循环后仍保持良好的可逆容量。这项工作可能为从工业固体废物中制备 LiFePO 阴极材料提供新的策略。