Duet Fe 3 C and FeN x Sites for H 2 O 2 Generation and Activation toward Enhanced Electro-Fenton Performance in Wastewater Treatment

Heterogeneous electro-Fenton (HEF) reaction has been considered as a promising process for real effluent treatments. However, the design of effective catalysts for simultaneous H O generation and activation to achieve bifunctional catalysis for O toward •OH production remains a challenge. Herein, a...

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Veröffentlicht in:Environmental science & technology 2021-01, Vol.55 (2), p.1260-1269
Hauptverfasser: Hu, Jingjing, Wang, Sen, Yu, Jiaqi, Nie, Wenkai, Sun, Jie, Wang, Shaobin
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Sprache:eng
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Zusammenfassung:Heterogeneous electro-Fenton (HEF) reaction has been considered as a promising process for real effluent treatments. However, the design of effective catalysts for simultaneous H O generation and activation to achieve bifunctional catalysis for O toward •OH production remains a challenge. Herein, a core-shell structural Fe-based catalyst (FeNC@C), with Fe C and FeN nanoparticles encapsulated by porous graphitic layers, was synthesized and employed in a HEF system. The FeNC@C catalyst presented a significant performance in degradation of various chlorophenols at various conditions with an extremely low level of leached iron. Electron spin resonance and radical scavenging revealed that •OH was the key reactive species and Fe would play a role at neutral conditions. Experimental and density function theory calculation revealed the dominated role of Fe C in H O generation and the positive effect of FeN sites on H O activation to form •OH. Meanwhile, FeNC@C was proved to be less pH dependence, high stability, and well-recycled materials for practical application in wastewater purification.
ISSN:0013-936X
1520-5851
DOI:10.1021/acs.est.0c06825