Back to Search Start Over

Highly efficient persulfate catalyst prepared from modified electrolytic manganese residues coupled with biochar for the roxarsone removal.

Authors :
Li, Mengke
He, Zhiguo
Zhong, Hui
Sun, Wei
Ye, Mingqiang
Tang, Yetao
Source :
Journal of Environmental Management. Feb2023, Vol. 328, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

The contamination of organoarsenic is becoming increasingly prominent while SR-AOPs were confirmed to be valid for their remediation. This study has found that the novel metal/carbon catalyst (Fe/C–Mn) prepared by solid waste with hierarchical pores could simultaneously degrade roxarsone (ROX) and remove As(V). A total of 95.6% of ROX (20 mg/L) could be removed at the concentration of 1.0 g/L of catalyst and 0.4 g/L of oxidant in the Fe/C–Mn/PMS system within 90 min. The scavenging experiment and electrochemical test revealed that both single-electron and two-electron pathways contributed to the ROX decomposition. Spectroscopic analysis suggested the ROX has been successfully mineralized while As(V) was fixed with the surface Fe and Mn. Density functional theory (DFT) calculation and chromatographic analysis indicated that the As7, N8, O9 and O10 sites of ROX molecule were vulnerable to being attacked by nucleophilic, electrophilic and radical, resulting in the formation of several intermediates such as phenolic compounds. Additionally, the low metal leaching concentration during recycling and high anti-interference ability in various water matrices manifested the practicability of Fe/C–Mn/PMS system. • The acidic condition was beneficial for the ROX degradation. • ROX has been mineralized while As(V) was fixed with the surface Fe. • Both single-electron and direct-electron ways contributed to the degradation. • The Fe/C–Mn could simultaneously degrade ROX and remove/fix As(V). [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03014797
Volume :
328
Database :
Academic Search Index
Journal :
Journal of Environmental Management
Publication Type :
Academic Journal
Accession number :
161278888
Full Text :
https://doi.org/10.1016/j.jenvman.2022.116945