Shi Wei, Li Jiayi, Gao Fei, Meng Lijun, Su Xiao, Wang Zhiwei
State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai, 200092, China.
School of Environmental Science and Engineering, Tongji University, Shanghai, 200092, China.
Nat Commun. 2024 Dec 30;15(1):10828. doi: 10.1038/s41467-024-55174-1.
Heavy metals complexed with organic ligands are among the most critical carcinogens threatening global water safety. The challenge of efficiently and cost-effectively removing and recovering these metals has long eluded existing technologies. Here, we show a strategy of coordinating mediator-based electro-reduction (CMBER) for the single-step recovery of heavy metals from wastewater contaminated with heavy metal-organic complexes. In CMBER, amidoxime with superior coordinating abilities over traditional ligands is immobilized by an amidoximation reaction onto a flow-through electrode that concurrently functions as a filtration device. This unique process spontaneously captures heavy metal ions at the -N-OH and -NH groups of the amidoxime from their complexes without external energy input (ΔG of amidoxime mediator with Cu(II): -6.59 eV), followed by direct in situ electro-reduction for metal recovery. The reduction of captured Cu(II) to Cu(0) regenerates the amidoxime's active sites, enabling continuous capture of Cu(II). Operating at a voltage of 3 V and a water flux of 250 L m h, the CMBER system achieves a Cu(II) recovery rate of 97.6% and demonstrates an energy efficiency of 340.1 g kWh. This energy efficiency significantly outperforms existing technologies, showing a nearly fivefold improvement. CMBER creates a new dimension for cost-effective resource recovery and water purification.
与有机配体络合的重金属是威胁全球水安全的最关键致癌物之一。长期以来,现有技术一直难以有效且经济高效地去除和回收这些金属。在此,我们展示了一种基于配位介质的电还原(CMBER)策略,用于从受重金属 - 有机络合物污染的废水中单步回收重金属。在CMBER中,通过偕胺肟化反应将具有比传统配体更强配位能力的偕胺肟固定在同时用作过滤装置的流通电极上。这一独特过程在无外部能量输入的情况下(偕胺肟介质与Cu(II)的ΔG:-6.59 eV),能从其络合物中在偕胺肟的 -N-OH和 -NH基团处自发捕获重金属离子,随后直接原位电还原以回收金属。将捕获的Cu(II)还原为Cu(0)可使偕胺肟的活性位点再生,从而能够持续捕获Cu(II)。CMBER系统在3 V电压和250 L m h的水通量下运行,实现了97.6%的Cu(II)回收率,能源效率为340.1 g kWh。这种能源效率显著优于现有技术,提高了近五倍。CMBER为经济高效的资源回收和水净化开辟了新途径。