University of Maribor, Faculty of Chemistry and Chemical Engineering, Smetanova 17, 2000 Maribor, Slovenia.
Institute for Environmental Protection and Sensors, Beloruska 7, 2000 Maribor, Slovenia; University of Maribor, Faculty of Mechanical Engineering, Smetanova 17, 2000 Maribor, Slovenia.
J Hazard Mater. 2020 Mar 15;386:121632. doi: 10.1016/j.jhazmat.2019.121632. Epub 2019 Nov 9.
Rare earth elements are widely used in chemical engineering, the nuclear industry, metallurgy, medicine, electronics, and computer technology because of their unique properties. To fulfil ever increasing demands for these elements, recycling of rare-earth-element-containing products as well as their recovery from wastewater is quite important. In order to recover rare earth elements from wastewater, their adsorption from low-concentration aqueous solutions, by using nanomaterials, is investigated due to technological simplicity and high efficiency. This paper is a review of the state-of-the-art adsorption technologies of rare earth elements from diluted aqueous solutions by using various nanomaterials. Furthermore, desorption and reusability of rare earth metals and nanomaterials are discussed. On the basis of this review it can be concluded that laboratory testing indicates promising adsorption capacities, which depend significantly on nanomaterial type and adsorption conditions. The adsorption process, which mostly follows the Langmuir, Freundlich, Sips, and Temkin isotherms, is typically endothermic and spontaneous. Furthermore, pseudo-second order, pseudo-first order, and intra-particle diffusion models are the best models to describe the kinetics of adsorption. The dominant adsorption mechanisms are surface complexation and ion exchange. More investigation, however, will be required in order to synthesize appropriate, environmentally friendly, and efficient nanomaterials for adsorption of rare earth elements from real wastewater.
由于其独特的性质,稀土元素在化学工程、核工业、冶金、医药、电子和计算机技术中得到了广泛的应用。为了满足对这些元素日益增长的需求,从含稀土元素的产品中回收以及从废水中回收这些元素非常重要。为了从废水中回收稀土元素,由于技术简单、效率高,人们研究了用纳米材料从低浓度水溶液中吸附稀土元素。本文综述了用各种纳米材料从稀水溶液中吸附稀土元素的最新吸附技术。此外,还讨论了稀土金属和纳米材料的解吸和再利用。根据这篇综述可以得出结论,实验室测试表明具有有前景的吸附能力,这在很大程度上取决于纳米材料的类型和吸附条件。吸附过程主要遵循 Langmuir、 Freundlich、Sips 和 Temkin 等温线,通常是吸热和自发的。此外,拟二级、拟一级和内扩散模型是描述吸附动力学的最佳模型。主要的吸附机制是表面络合和离子交换。然而,为了从实际废水中吸附稀土元素,合成合适的、环保的和高效的纳米材料,还需要进一步的研究。