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Construction of stable photo-Fenton system with efficient removal capability of ciprofloxacin by accelerating photoreduction of Fe in MIL-100(Fe). | LitMetric

Construction of stable photo-Fenton system with efficient removal capability of ciprofloxacin by accelerating photoreduction of Fe in MIL-100(Fe).

Environ Technol

State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou, People's Republic of China.

Published: September 2024

Well-dispersed MIL-100(Fe) nanoparticles were synthesized under mild conditions and used to construct a photo-Fenton system (VMH system) with the assistance of visible-light irradiation and hydrogen peroxide. In such a VMH system, the MIL-100(Fe) has a high specific surface area and provides numerous Fe active sites, thus accelerating the reaction of Fe with photo-generated electrons under visible-light irradiation and generates Fe, and then the acquired Fe can activate HO to generate OH, accompanying with the oxidation of Fe to Fe. Hence, the recycling of Fe/Fe promotes the generation of ·OH, thus making the VMH system exhibits promising photocatalytic activity. The removal rate of ciprofloxacin in the VMH system is as high as 95.2% within 120 min photo-Fenton reaction, which is about 26 times higher than that of the Visible light/MIL-100(Fe) system. Moreover, the VMH system also exhibits strong degradation ability to other typical antibiotics, such as tetracycline, norfloxacin and cephalexin, and maintains high cyclic stability, revealing great practical application potential in the purification of antibiotic wastewater.

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Source
http://dx.doi.org/10.1080/09593330.2023.2283049DOI Listing

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