2018
DOI: 10.1016/j.jenvman.2018.01.052
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Catalytic ozonation for the treatment of synthetic and industrial effluents - Application of mesoporous materials: A review

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Cited by 157 publications
(65 citation statements)
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“…In addition, ozone could be adsorbed on the catalyst surface due to its electrophilic character which promotes the ozone decomposition and the generation of $OH. 42 As shown in Fig. S10, † the addition of H 2 O 2 signicantly improved the TCH degradation by ozone, which can promote ozone decomposition to generate more reactive $OH.…”
Section: Possible Reaction Mechanism During Coso Catalytic Ozonation mentioning
confidence: 96%
“…In addition, ozone could be adsorbed on the catalyst surface due to its electrophilic character which promotes the ozone decomposition and the generation of $OH. 42 As shown in Fig. S10, † the addition of H 2 O 2 signicantly improved the TCH degradation by ozone, which can promote ozone decomposition to generate more reactive $OH.…”
Section: Possible Reaction Mechanism During Coso Catalytic Ozonation mentioning
confidence: 96%
“…These results indicated that increasing the amount of catalyst in the solution was conducive to improving the specic surface area of the catalyst in the solution and facilitating decomposition of ozone molecules into more $OH. 38 However, the removal efficiency and mineralization efficiency of CIP were not signicantly improved when the addition of the catalyst was 1.0 g L À1 because of the limited amount of ozone in the system. In addition, when the catalytic dose continued to increase, the particles collided with each other, thus affecting the effective contact between the catalyst and ozone.…”
Section: Inuence Of the Catalyst Dosage On The Catalytic Ozonation Pmentioning
confidence: 99%
“…Ozone can easily decompose to hydroxyl radicals, which can eliminate pollutants in wastewater (Derco et al, 2015;Desmiarti et al, 2019). The addition of adsorbent to this process can also increase hydroxyl radical production, resulting in more effective and faster oxidation of organic compounds (Fujita et al, 2004;Zhang et al, 2016;Ghuge & Saroha, 2018).…”
Section: Introductionmentioning
confidence: 99%