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新型磁性可分离可见光驱动Z型CoFeO/P掺杂BiOBr异质结纳米复合材料增强同步光催化降解4-氯苯酚及还原Cr(VI)

Enhanced synchronous photocatalytic 4-chlorophenol degradation and Cr(VI) reduction by novel magnetic separable visible-light-driven Z-scheme CoFeO/P-doped BiOBr heterojunction nanocomposites.

作者信息

Sin Jin-Chung, Lam Sze-Mun, Zeng Honghu, Lin Hua, Li Haixiang, Huang Liangliang, Tham Kai-Onn, Mohamed Abdul Rahman, Lim Jun-Wei

机构信息

College of Environmental Science and Engineering, Guilin University of Technology, Guilin, 541004, China; Guangxi Key Laboratory of Theory and Technology for Environmental Pollution Control, Guilin University of Technology, Guilin, 541004, China; Collaborative Innovation Center for Water Pollution Control and Water Safety in Karst Area, Guilin University of Technology, Guilin, 541004, China; Department of Petrochemical Engineering, Faculty of Engineering and Green Technology, Universiti Tunku Abdul Rahman, Jalan Universiti, Bandar Barat, 31900, Kampar, Perak, Malaysia.

College of Environmental Science and Engineering, Guilin University of Technology, Guilin, 541004, China; Guangxi Key Laboratory of Theory and Technology for Environmental Pollution Control, Guilin University of Technology, Guilin, 541004, China; Collaborative Innovation Center for Water Pollution Control and Water Safety in Karst Area, Guilin University of Technology, Guilin, 541004, China; Department of Environmental Engineering, Faculty of Engineering and Green Technology, Universiti Tunku Abdul Rahman, Jalan Universiti, Bandar Barat, 31900, Kampar, Perak, Malaysia.

出版信息

Environ Res. 2022 Sep;212(Pt C):113394. doi: 10.1016/j.envres.2022.113394. Epub 2022 May 7.

Abstract

The co-existence of organic contaminants and heavy metals including 4-chlorophenol (4-CP) and Cr(VI) in aquatic system have become a challenging task in the wastewater treatment. Herein, the synchronous photocatalytic decomposition of 4-CP and Cr(VI) over new Z-scheme CoFeO/P-BiOBr heterojunction nanocomposites were revealed. In this work, the nanocomposites were successfully developed via a surfactant-free hydrothermal method. The heterojunction interface was created by decorating magnetic CoFeO nanoparticles onto P-BiOBr nanosheets. The as-fabricated CoFeO/P-BiOBr nanocomposites substantially improved the synchronous decomposition of 4-CP and Cr(VI) compared to the single-phase component samples under visible light irradiation. Particularly, the 30-CoFeO/P-BiOBr nanocomposite displayed the best photocatalytic performance, which decomposed 95.6% 4-CP and 100% Cr(VI) within 75 min. The photocatalytic improvement was assigned to the Z-scheme heterojunction assisted charge migration between CoFeO and P-BiOBr, and the acceleration of charge carrier separation was validated by the findings of charge dynamics measurements. The harmful 4-CP was photodegraded into smaller organics whereas the Cr(VI) was photoreduced into Cr(III) after 30-CoFeO/P-BiOBr photocatalysis, and the good recyclability of fabricated nanocomposite in photocatalytic reaction also showed promising potential for practical applications in environmental remediation. Finally, the radical quenching tests confirmed that there existed the Z-scheme path of charge migration in CoFeO/P-BiOBr nanocomposite, which was the mechanism responsible for its high photoactivity.

摘要

在水系统中,有机污染物与包括4-氯苯酚(4-CP)和六价铬(Cr(VI))在内的重金属共存,这已成为废水处理中的一项具有挑战性的任务。在此,揭示了新型Z型CoFeO/P-BiOBr异质结纳米复合材料对4-CP和Cr(VI)的同步光催化分解作用。在这项工作中,通过无表面活性剂水热法成功制备了纳米复合材料。通过在P-BiOBr纳米片上修饰磁性CoFeO纳米颗粒形成异质结界面。与单相组分样品相比,所制备的CoFeO/P-BiOBr纳米复合材料在可见光照射下显著提高了4-CP和Cr(VI)的同步分解能力。特别是,30-CoFeO/P-BiOBr纳米复合材料表现出最佳的光催化性能,在75分钟内分解了95.6%的4-CP和100%的Cr(VI)。光催化性能的提高归因于Z型异质结辅助CoFeO和P-BiOBr之间的电荷迁移,电荷动力学测量结果验证了电荷载流子分离的加速。有害的4-CP在30-CoFeO/P-BiOBr光催化后被光降解为较小的有机物,而Cr(VI)被光还原为Cr(III),所制备的纳米复合材料在光催化反应中良好的可回收性也显示出在环境修复实际应用中的潜力。最后,自由基猝灭试验证实了CoFeO/P-BiOBr纳米复合材料中存在电荷迁移的Z型路径,这是其高光活性的作用机制。

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