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高度分散的银和g-C3N4量子点共修饰的三维分级Fe3O4空心微球用于自然光驱动天然水基质中药物污染物的降解

Highly dispersed Ag and g-C3N4 quantum dots co-decorated 3D hierarchical Fe3O4 hollow microspheres for solar-light-driven pharmaceutical pollutants degradation in natural water matrix.

作者信息

Wang Anqi, Guo Shuya, Zheng Zhikeng, Wang Hui, Song Xiaolong, Zhu Haida, Zeng Yiqiu, Lam Jason, Qiu Rongliang, Yan Kai

机构信息

Research Center for Eco-environmental Engineering, Dongguan University of Technology, Dongguan 523808, China.

Research Center for Eco-environmental Engineering, Dongguan University of Technology, Dongguan 523808, China; College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen 518060, China.

出版信息

J Hazard Mater. 2022 Jul 15;434:128905. doi: 10.1016/j.jhazmat.2022.128905. Epub 2022 Apr 14.

Abstract

The efficient removal of pharmaceutical pollutants presents a great challenge for the conventional sewage treatment system. Herein, we document the nanosheets assembled 3D hierarchical FeO hollow microspheres co-modified by Ag and g-CN quantum dots (Ag/CNQDs@FeO) for efficient degradation of two classic anticancer drugs, i.e., capecitabine (CAP) and 5-fluorouracil (5-FLU) under visible light in 1 h. Benefiting from the unique hierarchically hollow structure, the intrinsic strengths of each component and their interactions, synergistic reinforcing mechanism is constructed, furnishing more accessible reactive places, promoting the diffusion of pollutants/oxidants, improving charge separation ability, and raising light utilization rate. Consequently, Ag/CNQDs@FeO can not only show superior photocatalytic properties, but also greatly boost PMS activation to yield sufficient oxidative radicals. More notably, the studied system also features excellent stability and strong tolerance to real water samples, and maintains appreciable performance even under natural sunlight illumination. The predominant active species, possible ADs decomposition pathways, and underlying reaction mechanism for the Ag/CNQDs@FeO/PMS/vis system are thoroughly explored. This work presents significant advancement in enabling an integrated technology of PMS and photocatalysis to realize its great potential in environment restoration.

摘要

高效去除药物污染物对传统污水处理系统提出了巨大挑战。在此,我们记录了由银和g-CN量子点(Ag/CNQDs@FeO)共修饰的纳米片组装三维分级FeO空心微球,用于在可见光下1小时内高效降解两种经典抗癌药物,即卡培他滨(CAP)和5-氟尿嘧啶(5-FLU)。受益于独特的分级空心结构、各组分的固有优势及其相互作用,构建了协同增强机制,提供了更多可及的反应位点,促进了污染物/氧化剂的扩散,提高了电荷分离能力,并提高了光利用率。因此,Ag/CNQDs@FeO不仅能表现出优异的光催化性能,还能极大地促进PMS活化以产生足够的氧化自由基。更值得注意的是,所研究的系统还具有出色的稳定性和对实际水样的强耐受性,即使在自然阳光照射下也能保持可观的性能。深入探究了Ag/CNQDs@FeO/PMS/vis体系的主要活性物种、可能的吸附剂分解途径及潜在反应机理。这项工作在实现PMS与光催化集成技术以发挥其在环境修复中的巨大潜力方面取得了重大进展。

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