2022
DOI: 10.3390/nano12244410
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Oxygen Vacancy-Mediated Activates Oxygen to Produce Reactive Oxygen Species (ROS) on Ce-Modified Activated Clay for Degradation of Organic Compounds without Hydrogen Peroxide in Strong Acid

Abstract: The treatment of acid wastewater to remove organic matter in acid wastewater and recycle valuable resources has great significance. However, the classical advanced oxidation process (AOPs), such as the Fenton reaction, encountered a bottleneck under the conditions of strong acid. Herein, making use of the oxidation properties of CeAY (CeO2@acid clay), we built an AOPs reaction system without H2O2 under a strong acid condition that can realize the transformation of organic matter in industrial wastewater. The X… Show more

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Cited by 5 publications
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“…Figure 9C shows the transition of the Ti element to anatase TiO 2 . As shown in Figure 9D, the Ce 3d spectra have binding energy at 915.9, 906.0, 901.0, 898.1, 888.1, and 882.7 eV, which are attributed to Ce 4+ 57 . This demonstrates that the increase in residue char mass could be attributed to the redox reaction of Ce 3+ /Ce 4+ .…”
Section: Resultsmentioning
confidence: 78%
“…Figure 9C shows the transition of the Ti element to anatase TiO 2 . As shown in Figure 9D, the Ce 3d spectra have binding energy at 915.9, 906.0, 901.0, 898.1, 888.1, and 882.7 eV, which are attributed to Ce 4+ 57 . This demonstrates that the increase in residue char mass could be attributed to the redox reaction of Ce 3+ /Ce 4+ .…”
Section: Resultsmentioning
confidence: 78%