光催化
催化作用
甲基橙
光降解
化学工程
电子顺磁共振
材料科学
激进的
降级(电信)
双酚A
光化学
纳米颗粒
多相催化
可见光谱
化学
有机化学
纳米技术
计算机科学
光电子学
环氧树脂
工程类
物理
电信
核磁共振
作者
Yuanyuan Yu,Qingtong Zhang,Lingyun Hao,Huashuang Huo,Moyan Li,Xi Liu,Shuangfei Wang,Douyong Min
标识
DOI:10.1016/j.envres.2022.114298
摘要
In this study, a Cu2O–Au nanoparticles (NPs) heterojunction catalyst anchored on wood was developed by in situ reduction and hydrothermal treatment, and the properties of the catalyst were systematically characterized. The catalyst exhibited prominent photocatalysis of methyl orange (MO, 0.169 min− 1), and tetracycline (TC, 0.122 min−1) which were degraded completely within 20 min. Even after four recyclings, the efficiency of MO degradation by the catalyst remained at 80%. The natural wood with three-dimensional porous structures acted as a reducing agent and a stabilizer for Au NPs and Cu2O, which helped to maintain high performance and reusability. The presence of Au NPs mediated the light-induced electron transfer and enhanced the absorption of visible light for promoting photocatalytic activity. The intermediates of contaminants within the degradation process were characterized by liquid chromatography-mass spectrometry. Additionally, the photogenerated superoxide radicals and holes were identified by electron spin resonance. Thus, the potential degradation mechanism catalyzed by the Cu2O–Au NPs-wood was proposed. This findings of this study valorizes biomass as a photocatalyst for wastewater remediation.
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