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Co-catalysis of N, S-codoped biochar toward photo-Fenton reaction for degradation of organic micropollutants in water

Junhuan Zhang · Ying Lv · Jinxuan Li · Jinhong Lü · Jianfa Li
10.25259/ajc_350_2025 382 Views 0 Citations
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Abstract


Photo-Fenton reaction can degrade organic pollutants with less consumption of H
2
O
2
and iron sources than conventional Fenton processes, but suffers from the problem of slow regeneration of Fe
2+
. Herein, an N, S-codoped biochar (NSB) co-catalyst was developed to accelerate iron redox cycling and enhance the oxidation of organic micropollutants in a visible-light-driven photo-Fenton system. Under optimized conditions (1.0 g L
–1
of NSB, 1.0 mg L
–1
of Fe
3+
, and initial pH = 3.5), the co-catalytic system (NSB+Fe
3+
+H
2
O
2
) achieved 95% sulfadiazine (an antibiotic) degradation within 30 min, with an observed rate constant (
k
obs
= 0.108 min
–1
) 10 times higher than that of the photo-Fenton process (Fe
3+
+H
2
O
2
). This co-catalytic photo-Fenton process exhibits broad applicability to degrade diverse micropollutants and in real water matrices (e.g., river water and tap water). Mechanistic investigations reveal that defects, pyridinic N, and thiophenic S sites on NSB facilitated the regeneration of Fe
2+
via electron transfer, thereby promoting the production of

OH and subsequent degradation of micropollutants. Thus, this research contributes to the advancement of the catalytic photo-Fenton reaction.

Cite this Article (APA)
Junhuan, Z., Ying, L., Jinxuan, L., Jinhong, L., Jianfa, L. (2026). Co-catalysis of N, S-codoped biochar toward photo-Fenton reaction for degradation of organic micropollutants in water. Arabian Journal of Chemistry. https://doi.org/10.25259/ajc_350_2025
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Published in
ISSN 1878-5352
Quartile Q1
AMS Score 100
Field Natural Sciences
Publisher King Saud University / Elsevier
Country 🇸🇦 Saudi Arabia
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Authors
Publication Details
Year 2026
Language English
Added 24 Jul 2026