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DBD synergistic UiO-66/GO-n: a new dawn for efficient defluorination and rapid degradation of fluorine-containing organic pollutants

delete2026-05-09
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PRE
AI
Y
Yejian Liu
L
Lijuan Duan *
S
Shuling Fang
W
Wuming Xie *
Q
Qingnan Zeng
J
Jingyi Huang
H
Hongyang Cao
Z
Zhiyuan Ma
DOI:10.1016/j.psep.2026.108976delete
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Abstract

Abstract

En 中文
In this study, a coupling system of dielectric barrier discharge (DBD) and UiO-66/GO was constructed to achieve efficient defluorination and rapid degradation of fluorine-containing compounds. The degradation rate, F- release efficiency and TOC removal rate of 4-fluorophenol (4-FP) were systematically studied by optimizing DBD discharge parameters, pH value, initial concentration and catalyst type. The results showed that after adding the optimal catalyst, the degradation rate of 4-FP reached 100% within 25 minutes, the defluorination rate reached 99.62% within 120 minutes, and the TOC removal rate was 25.45% in the single DBD, and increased to 46.37% after adding UiO-66/GO-2. UV-Vis DRS, UPS, PL, and TRPL revealed that UiO-66/GO composite catalysts play a key role in inhibiting carrier recombination and achieving rapid electron transfer. FT-IR, XPS and free radical quenching experiments demonstrated that the synergistic mechanism depended on the active species (•OH, •H, eaq-,•O2-) and Zr4+/Zr3+ redox sites produced by DBD.These components jointly promoted C-F bond cleavage and intermediate mineralization, thus achieving the ultimate goal of efficient defluorination and rapid degradation.
Keywords:
DBD
UiO-66/GO
defluorination
fluorine-containing compounds
degradation mechanism

Journal

Process Safety and Environmental Protection cover
Process Safety and Environmental Protection
IF:
7.8
Papers:
9.4K
Citations:
3.8W

Organization

G
guangdong academy of sciences
Scholars:
649
Papers: 235
Citations: 0
G
guangdong university of technology
Scholars:
2.8W
Papers: 1.9W
Citations: 36
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