催化作用
电镀
光热治疗
材料科学
危险废物
废水
化学工程
污水处理
纳米技术
废物管理
石油化工
化学
有机化学
工程类
图层(电子)
作者
Shenghua Wang,Dake Zhang,Wu Wang,Jun Zhong,Kai Feng,Zhiyi Wu,Boyu Du,Jiaqing He,Zhengwen Li,Le He,Wei Sun,Deren Yang,Geoffrey A. Ozin
标识
DOI:10.1038/s41467-022-33029-x
摘要
Treating hazardous waste Ni from the electroplating industry is mandated world-wide, is exceptionally expensive, and carries a very high CO2 footprint. Rather than regarding Ni as a disposable waste, the chemicals and petrochemicals industries could instead consider it a huge resource. In the work described herein, we present a strategy for upcycling waste Ni from electroplating wastewater into a photothermal catalyst for converting CO2 to CO. Specifically, magnetic nanoparticles encapsulated in amine functionalized porous SiO2, is demonstrated to efficiently scavenge Ni from electroplating wastewater for utilization in photothermal CO2 catalysis. The core-shell catalyst architecture produces CO at a rate of 1.9 mol·gNi-1·h-1 (44.1 mmol·gcat-1·h-1), a selectivity close to 100%, and notable long-term stability. This strategy of upcycling metal waste into functional, catalytic materials offers a multi-pronged approach for clean and renewable energy technologies.
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