降级(电信)
毒性
光催化
四环素
化学
铋
催化作用
急性毒性
慢性毒性
兴奋剂
污染物
异质结
大型水蚤
金属毒性
分解
金属
核化学
钒酸铋
无机化学
化学稳定性
钒酸盐
环境化学
盐卤虫
材料科学
化学工程
化学分解
铬
可见光谱
镍
光化学
作者
Santu Shrestha,Harshavardhan Mohan,Narayan Gyawali,Subas Acharya,Gitae Kim,Taeho Shin,Jae Ryang Hahn
出处
期刊:ACS omega
[American Chemical Society]
日期:2026-01-05
卷期号:11 (2): 2780-2799
被引量:2
标识
DOI:10.1021/acsomega.5c08576
摘要
High Resolution Image Download MS PowerPoint Slide Tetracycline (TTC), a commonly used antibiotic, has become an emerging contaminant in aquatic environments, posing chronic toxicity and ecological risks. To address this, we introduce a novel Ni-doped BiVO 4 (Ni-BVO) and Cu 2 O/Ni-BiVO 4 (CNBVO) composites by doping nickel into bismuth vanadate (BVO) and subsequently decorating it with truncated octahedral Cu 2 O nanoparticles. This combined strategy of doping and coupling for CNBVO aims to improve visible-light absorption, optimize the band gap, and enhance charge-separation efficiency. Their photocatalytic effectiveness was tested by decomposing TTC. Remarkably, the CNBVO photocatalyst achieved almost complete (98%) degradation of TTC within 180 min. This decomposition followed first-order reaction kinetics, and the reaction rate constant for CNBVO was significantly higher by 675%, 337%, and 225% compared to pure Cu 2 O, BVO, and Ni-BVO, respectively. Optimal degradation conditions were determined as a catalyst dose of 0.2 g L –1 at neutral pH for an initial TTC concentration of 10 mg L –1, maintaining stability over five successive cycles. Toxicity tests performed on degradation intermediates demonstrated reduced toxicity to brine shrimp (in terms of hatchability and lethality) and earthworms (acute lethality, growth, and biochemical markers). Computational toxicity predictions further supported these findings. This study presents a unique photocatalyst synthesis integrating metal doping and semiconductor coupling, offering mechanistic insights into pollutant degradation and real-world applicability.
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