Heterogeneous activation of persulfate by metal and non-metal catalyst for the degradation of sulfamethoxazole: A review

DT Oyekunle, EA Gendy, J Ifthikar, Z Chen - Chemical Engineering Journal, 2022 - Elsevier
Sulfamethoxazole (SMX) is a high-priority pharmaceutical that is widely used as an antibiotic
and fungicide. It can be partially metabolized by animal and human bodies, hence a large …

Recent advances in application of graphitic carbon nitride-based catalysts for degrading organic contaminants in water through advanced oxidation processes beyond …

Y Yang, X Li, C Zhou, W **ong, G Zeng, D Huang… - Water research, 2020 - Elsevier
Advanced oxidation processes (AOPs) have attracted much interest in the field of water
treatment owing to their high removal efficiency for refractory organic contaminants …

Correlation of active sites to generated reactive species and degradation routes of organics in peroxymonosulfate activation by Co-loaded carbon

N Li, R Li, X Duan, B Yan, W Liu, Z Cheng… - Environmental …, 2021 - ACS Publications
Peroxymonosulfate (PMS)-based advanced oxidation processes (PMS-AOPs) as an efficient
strategy for organic degradation are highly dependent on catalyst design and structured …

Carbonized polyaniline activated peroxymonosulfate (PMS) for phenol degradation: Role of PMS adsorption and singlet oxygen generation

S Liu, Z Zhang, F Huang, Y Liu, L Feng, J Jiang… - Applied Catalysis B …, 2021 - Elsevier
N-doped carbonaceous materials are promising efficient catalysts for peroxymonosulfate
(PMS) activation. In this study, the high-efficient N-doped carbon materials were prepared by …

Fe3O4 quantum dots mediated Pg-C3N4/BiOI as an efficient and recyclable Z-scheme photo-Fenton catalyst for tetracycline degradation and bacterial inactivation

X Li, X Shen, Y Qiu, Z Zhu, H Zhang, D Yin - Journal of Hazardous Materials, 2023 - Elsevier
Photo-Fenton technology integrated by photocatalysis and Fenton reaction is a favorable
strategy for water remediation. Nevertheless, the development of visible-light-assisted …

[HTML][HTML] Understanding the role of transition metal single-atom electronic structure in oxysulfur radical-mediated oxidative degradation

G Zhao, J Ding, J Ren, Q Zhao, C Mao, K Wang… - Environmental Science …, 2024 - Elsevier
The ubiquity of refractory organic matter in aquatic environments necessitates innovative
removal strategies. Sulfate radical-based advanced oxidation has emerged as an attractive …

Experimental and DFT insights into the visible-light driving metal-free C3N5 activated persulfate system for efficient water purification

J Zhang, B **g, Z Tang, Z Ao, D **a, M Zhu… - Applied Catalysis B …, 2021 - Elsevier
Although Fenton-like processes have been widely applied to treat emerging micropollutants
(EMs) in wastewater, conventional activators used to activate peroxymonosulfate (PMS) or …

Novel Nonradical Oxidation of Sulfonamide Antibiotics with Co(II)-Doped gC3N4-Activated Peracetic Acid: Role of High-Valent Cobalt–Oxo Species

B Liu, W Guo, W Jia, H Wang, Q Si… - Environmental …, 2021 - ACS Publications
Herein, we report that Co (II)-doped g-C3N4 can efficiently trigger peracetic acid (PAA)
oxidation of various sulfonamides (SAs) in a wide pH range. Quite different from the …

Electron transfer enhancing the Mn (II)/Mn (III) cycle in MnO/CN towards catalytic ozonation of atrazine via a synergistic effect between MnO and CN

D Wang, Y He, Y Chen, F Yang, Z He, T Zeng, X Lu… - Water Research, 2023 - Elsevier
In this study, manganese oxide (MnO) dispersed on CN (Mn-nCN) was fabricated as a
catalyst in heterogeneous catalytic ozonation (HCO), achieving excellent catalytic …

Accelerating radical generation from peroxymonosulfate by confined variable Co species toward ciprofloxacin mineralization: ROS quantification and mechanisms …

J Liang, L Fu, K Gao, X Duan - Applied Catalysis B: Environmental, 2022 - Elsevier
Cobalt and oxides are the most recognized catalysts for peroxymonosulfate (PMS)-based
advanced oxidation processes. However, the valence states–catalysis relations remain …