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Singlet oxygen: Properties, generation, detection, and environmental applications

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 461, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.jhazmat.2023.132538

关键词

Molecular oxygen; Advanced oxidation process; Free radical; Non-radical species; Sterilization

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This paper provides a systematic discussion on the properties, generation, and detection methods of singlet oxygen (1O2), as well as reviewing the controversies in catalytic systems. The applications of 1O2 in environmental remediation are discussed, including the degradation of pollutants in water and atmosphere, disinfection of drinking water, gas/solid sterilization, and self-cleaning of filter membranes. The paper also highlights future opportunities and challenges in utilizing 1O2 for environmental protection.
Singlet oxygen (1O2) is molecular oxygen in the excited state with high energy and electrophilic properties. It is widely found in nature, and its important role is gradually extending from chemical syntheses and medical techniques to environmental remediation. However, there exist ambiguities and controversies regarding detection methods, generation pathways, and reaction mechanisms which have hindered the understanding and applications of 1O2. For example, the inaccurate detection of 1O2 has led to an overestimation of its role in pollutant degradation. The difficulty in detecting multiple intermediate species obscures the mechanism of 1O2 production. The applications of 1O2 in environmental remediation have also not been comprehensively commented on. To fill these knowledge gaps, this paper systematically discussed the properties and generation of 1O2, reviewed the state-of-the-art detection methods for 1O2 and long-standing controversies in the catalytic systems. Future opportunities and challenges were also discussed regarding the applications of 1O2 in the degradation of pollutants dissolved in water and volatilized in the atmosphere, the disinfection of drinking water, the gas/solid sterilization, and the self-cleaning of filter membranes. This review is expected to provide a better understanding of 1O2-based advanced oxidation processes and practical applications in the environmental protection of 1O2.

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