Self-cycled photo-Fenton-like system based on an artificial leaf with a solar-to-H2O2 conversion efficiency of 1.46%
Conservation of Natural Resources
Science
Iron
Q
Water
Hydrogen Peroxide
Wastewater
7. Clean energy
01 natural sciences
Article
6. Clean water
Environmental Policy
Water Purification
12. Responsible consumption
0104 chemical sciences
13. Climate action
Sunlight
Humans
Oxidation-Reduction
Water Pollutants, Chemical
DOI:
10.1038/s41467-022-32410-0
Publication Date:
2022-08-25T09:03:59Z
AUTHORS (10)
ABSTRACT
AbstractMillions of families around the world remain vulnerable to water scarcity and have no access to drinking water. Advanced oxidation processes (AOPs) are an effective way towards water purification with qualified reactive oxygen species (ROSs) while are impeded by the high-cost and tedious process in either input of consumable reagent, production of ROSs, and the pre-treatment of supporting electrolyte. Herein, we couple solar light-assisted H2O2 production from water and photo-Fenton-like reactions into a self-cyclable system by using an artificial leaf, achieving an unassisted H2O2 production rate of 0.77 μmol/(min·cm2) under 1 Sun AM 1.5 illumination. Furthermore, a large (70 cm2) artificial leaf was used for an unassisted solar-driven bicarbonate-activated hydrogen peroxide (BAP) system with recycled catalysts for real-time wastewater purification with requirements for only water, oxygen and sunlight. This demonstration highlights the feasibility and scalability of photoelectrochemical technology for decentralized environmental governance applications from laboratory benchtops to industry.
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