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Photooxidation of Natural and Waste Cr(III)-Bearing Hydroxides in Water and Ice: Cr(III)-O2 Complex Mediated Oxidation and Effect of Natural Organic Matter

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Title
Photooxidation of Natural and Waste Cr(III)-Bearing Hydroxides in Water and Ice: Cr(III)-O2 Complex Mediated Oxidation and Effect of Natural Organic Matter
Other Titles
물과 얼음에서의 천연 및 폐 크롬(III) 함유 수산화물의 광산화: 3가 크롬-산소 착물 매개 산화 및 천연 유기물의 영향
Authors
Yi Hu
Juanshan Du
Chung, Hyun Young
Kim, Kitae
Lee, Giehyeon
Choi, Wonyong
Keywords
Cr(III)-bearing hydroxideCr(III)?Cr(VI) redox processCr(VI) generationchemical reactions in ice
Issue Date
2025-09
Citation
Yi Hu, et al. 2025. "Photooxidation of Natural and Waste Cr(III)-Bearing Hydroxides in Water and Ice: Cr(III)-O2 Complex Mediated Oxidation and Effect of Natural Organic Matter". ENVIRONMENTAL SCIENCE & TECHNOLOGY, 59(36): 0-0.
Abstract
The photooxidative dissolution of Cr(III)-bearing hydroxides (Cr(OH)3 and FexCr1?x(OH)3) is proposed as a potential abiotic source of Cr(VI) in environments. Compared to the dark oxidation of Cr(OH)3 by O2, photoirradiation enhanced Cr(VI) production in both aqueous and frozen solutions. In the presence of natural organic matter (NOM), the photoproduction of Cr(VI) was significantly promoted in aqueous solution but hindered in frozen solution. Photosensitized NOM induced the production of H2O2 that played the dual roles of enhancing Cr(OH)3 oxidation in aqueous solution and accelerating Cr(VI) reduction in frozen solution. The in situ generated Cr(VI) in the Cr(OH)3/NOM/UV system was gradually accumulated during the repeated cycles of aqueous?frozen phase transitions and light? dark variations, which confirms that the stable Cr(OH)3 can be a source of natural Cr(VI) under realistic environmental conditions. The photooxidative dissolution of Cr(OH)3 is proposed to involve the complex formation between dissolved Cr(OH)4 ? and O2, which subsequently undergoes the photoinduced charge transfer, resulting in the oxidation of Cr(III) to Cr(VI) with the concurrent reduction of O2 to H2O2 via ?O2 ?. A similar mechanistic behavior was also observed with FexCr1?x(OH)3 (x = 0.3, 0.5, and 0.7) for the photooxidative production of Cr(VI). This study unveils an underappreciated pathway of Cr(VI) production from natural and waste Cr(III)-bearing hydroxides.
URI
https://repository.kopri.re.kr/handle/201206/16613
DOI
https://pubs.acs.org/doi/full/10.1021/acs.est.5c09710
Type
Article
Station
해당사항없음
Indexed
SCIE
Appears in Collections  
2025-2025, 얼음의 미세구조 특성연구를 통한 저온 정화기술 및 환경/에너지 신소재 개발 (25-25) / 김기태 (PE25120)
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