Institute of Environmental and Chemical Technology (ITQUIMA), University of Castilla-La Mancha, Avenida Camilo José Cela, S/N, 13071, Ciudad Real, Spain.
School of Agricultural Engineering, University of Castilla-La Mancha, Ronda de Calatrava, S/N, 13003, Ciudad Real, Spain.
Environ Sci Pollut Res Int. 2024 Apr;31(18):26747-26759. doi: 10.1007/s11356-024-32759-3. Epub 2024 Mar 8.
Given the high impact of traditional mining, the recovery of rare earth elements (REEs) from hazardous waste materials could become an option for the future in accordance with the principles of the circular economy. In this work, the technical feasibility of REEs recovery from metal mine tailings has been explored using electrokinetic-assisted phytoremediation with ryegrass (Lolium perenne L.). Phytoextraction combined with both AC current and DC current with reversal polarity was applied (1 V cm, 8 h day) to real mine tailings containing a total concentration of REEs (Sc, Y, La, Ce, Pr, and Nd) of around 146 mg kg. Changes in REEs geochemical fractionation and their concentrations in the soil pore water showed the mobilization of REEs caused by plants and electric current; REE availability was increased to a higher extent for combined electrokinetic-assisted phytoextraction treatments showing the relevant role of plants in the process. Our results demonstrated the initial hypothesis that it is feasible to recover REEs from real metal mining waste by phytoextraction and that the performance of this technology can be significantly improved by applying electric current, especially of the AC type, which increased REE accumulation in ryegrass in the range 57-68% as compared to that of the treatment without electric field application.
鉴于传统采矿的高影响,根据循环经济的原则,从危险废物中回收稀土元素(REEs)可能成为未来的一种选择。在这项工作中,使用电动辅助植物修复法用黑麦草(Lolium perenne L.)从金属矿山尾矿中回收 REEs 的技术可行性已经得到了探索。应用了植物提取与交流电流和直流电流反转极性相结合的方法(1 V cm,8 h day),对含有总浓度约为 146 mg kg 的 REEs(Sc、Y、La、Ce、Pr 和 Nd)的实际矿山尾矿进行处理。REEs 地球化学分馏的变化及其在土壤孔隙水中的浓度表明,植物和电流引起了 REEs 的迁移;与没有电场应用的处理相比,电动辅助植物提取联合处理显著增加了 REE 的有效性,表明植物在该过程中的相关作用。我们的结果证实了最初的假设,即通过植物提取从实际金属采矿废物中回收 REEs 是可行的,并且通过施加电流,特别是交流电流,可以显著提高该技术的性能,这将使黑麦草中 REE 的积累增加 57-68%。