2023
DOI: 10.1016/j.jwpe.2023.103819
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DBD plasma coupling MnO2-Fe3O4-cellulose acetate films for sulfamethoxazole degradation: Insight for catalytic ozonation and Fenton effect

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Cited by 5 publications
(1 citation statement)
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“…Low-temperature plasma technology (Nawaz et al 2023;Sanito et al 2022;Yusuf et al 2023) is an emerging advanced oxidation technology (Dhaka et al 2018), Due to its low energy consumption, high decomposition efficiency and no secondary pollution, it has been the subject of extensive research by a large number of scholars in recent years. Plasma technology breaks down gas and water molecules during its discharge process, generating large quantities of active substances (O3, H2O2, and •OH) (Dong et al 2022;Mouele et al 2021;Zhang et al 2023), as well as UV, visible light, and shockwaves. This technology exhibits excellent performance in degrading a wide range of organic pollutants(HajiNaebe 2020).…”
Section: Introductionmentioning
confidence: 99%
“…Low-temperature plasma technology (Nawaz et al 2023;Sanito et al 2022;Yusuf et al 2023) is an emerging advanced oxidation technology (Dhaka et al 2018), Due to its low energy consumption, high decomposition efficiency and no secondary pollution, it has been the subject of extensive research by a large number of scholars in recent years. Plasma technology breaks down gas and water molecules during its discharge process, generating large quantities of active substances (O3, H2O2, and •OH) (Dong et al 2022;Mouele et al 2021;Zhang et al 2023), as well as UV, visible light, and shockwaves. This technology exhibits excellent performance in degrading a wide range of organic pollutants(HajiNaebe 2020).…”
Section: Introductionmentioning
confidence: 99%