Key Laboratory of Rare Earth, Ganjiang Innovation Academy, Chinese Academy of Sciences, Ganzhou, 341000, People's Republic of China.
School of Rare Earths, University of Science and Technology of China, Hefei, Anhui, 230026, People's Republic of China.
Environ Sci Pollut Res Int. 2023 Jun;30(27):70731-70741. doi: 10.1007/s11356-023-27415-1. Epub 2023 May 8.
Adsorption of vanadium from wastewater defends the environment from toxic ions and contributes to recover the valuable metal. However, it is still challenging for the separation of vanadium (V) and chromium (Cr) because of their similar properties. Herein, a kind of CeO nanorod containing oxygen vacancies is facilely synthesized which displays ultra-high selectivity of V against various competitive ions (i.e., Fe, Mn, Cr, Ni, Cu, Zn, Ga, Cd, Ba, Pb, Mg, Be, and Co). Moreover, a large separation factor (SF) of 114,169.14 for the selectivity of V is achieved at the Cr/V ratio of 80 with the trace amount of V (~ 1 mg/L). The results show that the process of V uptake is the monolayer homogeneous adsorption and is controlled by external and intraparticle diffusions. In addition, it also shows that V is reduced to V and V and then formation of V-O complexation. This work offers a novel CeO nanorod material for efficient separation of V and Cr and also clarifies the mechanism of the V adsorption on the CeO surface.
从废水中吸附钒可以防止环境受到有毒离子的侵害,并有助于回收有价值的金属。然而,由于钒(V)和铬(Cr)的性质相似,因此它们的分离仍然具有挑战性。在此,我们简便地合成了一种含有氧空位的 CeO 纳米棒,其对各种竞争离子(即 Fe、Mn、Cr、Ni、Cu、Zn、Ga、Cd、Ba、Pb、Mg、Be 和 Co)具有超高的 V 选择性。此外,在 Cr/V 比为 80 且 V 的痕量(~1mg/L)的情况下,V 的选择性的分离因子(SF)达到 114,169.14。结果表明,V 的摄取过程是单层均相吸附,受外部和颗粒内扩散控制。此外,还表明 V 被还原为 V 和 V,然后形成 V-O 络合。这项工作为高效分离 V 和 Cr 提供了一种新型 CeO 纳米棒材料,并阐明了 V 在 CeO 表面上的吸附机理。