Liu Shugen, Chen Yue, Yu Shuo, Zhang Dongdong, Xie Gang
Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, China.
State Key Laboratory of Pressure Hydrometallurgical Technology of Associated Nonferrous Metal Resources, Kunming 650503, China.
ACS Omega. 2022 Jul 12;7(29):25580-25589. doi: 10.1021/acsomega.2c02744. eCollection 2022 Jul 26.
A HSO-HO system was developed to enhance the efficacy of vanadium extraction from roasted vanadium steel slag. The optimum parameters and the behavior of vanadium extraction were investigated systematically. When 1 mL of HO per gram of vanadium slag was added to a leaching mixture at 50 °C, along with 30% HSO, 80.5% of vanadium extraction was achieved within 15 min. However, without HO, only 58.5% of vanadium extraction was achieved at the same leaching time. The HSO-HO system facilitated the dissolution of metallic ions in a short time and then triggered the production of strong oxidizing substances, such as HO and O , via the Fenton reaction and Fenton-like reaction. Subsequently, the low-valence vanadium, existing in the leaching solution or located on the surface of the particle, was converted to pentavalent vanadium by strongly oxidizing substances, such as HO and its derivatives HO and O. The complex oxides on the surface of the particle were destroyed, after which the vanadium inside the particle was gradually exposed to the acid leaching solution. The vanadium was oxidized to pentavalent vanadium, which then entered the leaching solution. Finally, a pathway of vanadium extraction via the HSO-HO system was proposed to gain insight into rapid vanadium leaching.
开发了一种HSO-HO体系以提高从焙烧钒钢渣中提取钒的效率。系统研究了最佳参数和钒提取行为。当在50℃下向浸出混合物中每克钒渣加入1 mL HO,并加入30%的HSO时,在15分钟内钒提取率达到80.5%。然而,在没有HO的情况下,在相同浸出时间内钒提取率仅为58.5%。HSO-HO体系在短时间内促进了金属离子的溶解,然后通过芬顿反应和类芬顿反应引发了强氧化性物质如HO和O的产生。随后,浸出液中或颗粒表面存在的低价钒被HO及其衍生物HO和O等强氧化性物质转化为五价钒。颗粒表面的复合氧化物被破坏,之后颗粒内部的钒逐渐暴露于酸浸出液中。钒被氧化为五价钒,然后进入浸出液。最后,提出了通过HSO-HO体系提取钒的途径,以深入了解钒的快速浸出。