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Efficient and stable copper tungstate catalyst for water treatment with peroxymonosulfate: Effect of synthetic pH, primary oxidant, and practical feasibility

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Abstract
In this study, copper tungstate (CuWO4) nanoparticles, which are highly efficient and stable catalysts for water treatment, were synthesized via a hydrothermal method under various pH conditions. CuWO4 synthesized at pH 10 (CuWO4@10) exhibited the highest degradation efficiency and the lowest metal ion leaching. In the presence of CuWO4@10 (0.5 g/L) and peroxymonosulfate (PMS, 1 mM), 4-chlorophenol (4-CP, 100 μM) was completely degraded within 5 min, and the total metal ion leaching concentration after 4 h was only 10.2 μM. The catalytic activity of CuWO4 for 4-CP degradation was 4.7–99.0 times greater than that of CuO catalysts. This enhanced performance is attributed to the presence of W, which increases the surface area and reduces charge transfer resistance. Based on the results of radical-quenching experiments, solvent exchange experiments, PMS decomposition measurements, electron paramagnetic resonance spectroscopy, and Raman spectroscopy, high-valent copper (Cu(III)) was identified as the primary oxidant responsible for degradation in the CuWO4/PMS system. The CuWO4/PMS system rapidly degraded various phenolic compounds, and its degradation efficiency remained consistent across repeated uses of the CuWO4 catalyst. Degradation in groundwater also occurred efficiently in the CuWO4/PMS system. This study pro
Author(s)
임종훈Khen Duy Tran안용윤김보미김기태김정원
Issued Date
2025-05-05
Type
Article
Keyword
수질처리
DOI
10.1016/j.jhazmat.2025.137482
URI
http://repository.sungshin.ac.kr/handle/2025.oak/8707
Publisher
ELSEVIER
ISSN
0304-3894
Appears in Collections:
청정신소재공학과 > 학술논문
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