In-situ production and activation of H2O2 over hydroxyapatite modified CuFeO2 for self-sufficient heterogeneous photo-Fenton degradation of doxycycline hydrochloride

降级(电信) 材料科学 原位 光催化 化学工程 可见光谱 X射线光电子能谱 催化作用 化学 光电子学 计算机科学 有机化学 电信 工程类
作者
Yanan Dong,Dong Hwan Wang,Yingchen Zhu,Qianwen Wang,Guo‐Cheng Liu,Qinghua Yan,Yucan Liu,Qinghua Chen,Dong Ma,Guangshan Zhang,Shuaishuai Xin,Yanjun Xin
出处
期刊:Journal of Colloid and Interface Science [Elsevier BV]
卷期号:658: 286-300 被引量:11
标识
DOI:10.1016/j.jcis.2023.12.082
摘要

The self-sufficient heterogeneous photo-Fenton (SH-PF) system was constructed for doxycycline hydrochloride (DOH) degradation with hydroxyapatite (Hap) modified CuFeO2 (Hap/CuFeO2) composites through H2O2 in-situ production. The modification of Hap could improve the specific surface area, visible-light response, light conversion efficiency, photoelectron lifetime and oxygen vacancies (OVs) of CuFeO2, which was conducive to H2O2 production and DOH degradation in SH-PF system. Notably, Hap/CuFeO2 fabricated with 0.5 g Hap (Hap/CuFeO2-0.5) displayed more superior performance for DOH degradation compared to other synthesized catalysts. The Hap/CuFeO2-0.5 load and initial solution pH for DOH degradation in SH-PF system were optimized, and the Hap/CuFeO2-0.5 had good reusability and stability. The •OH was the main active species for DOH degradation, and the facilitation effect of •O2– and photoelectrons on DOH degradation was associated with the H2O2 production in the present work. In addition, the capture of photogenerated holes suppressed the recombination of photogenerated carriers, elevating the production of photoelectrons and thereby enhancing H2O2 production and DOH degradation. The degradation pathways for DOH were proposed and the comprehensive toxicities of DOH were relieved after degradation in SH-PF system.
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