Synergistic photocatalysis and fenton-like process driven by a biochar-supported biochar/iron hydroxide oxide/bismuth molybdate S-type heterojunction for tetracycline degradation: Mechanistic insights and degradation pathways
Qingquan Xue(Zhejiang Shuren University), Xiaofeng Shen(Zhejiang University of Science and Technology), Pei Sean Goh(University of Technology Malaysia), Qian Feng(Taiyuan University of Technology), Minuo Dong(Zhejiang Shuren University), Ye Yang(Zhejiang University of Science and Technology), Kaiwei Hu(Zhejiang Shuren University), Bingtao Song(Zhejiang University of Science and Technology)
Cited by 32
Related Papers
An overview of polylactic acid (PLA) nanocomposites for sensors
|Advanced Composites and Hybrid Materials|2024|164
Efficiently removal of tetracycline via synergistic photocatalysis with Fenton reaction with biochar/FeOOH
|Applied Surface Science|2023|93
Constructing a continuous reduced graphene oxide network in porous plant fiber sponge for highly compressible and sensitive piezoresistive sensors
|Advanced Composites and Hybrid Materials|2023|68
Visible-NIR responsive Ag2O couple with MIL-53(Fe) on CS as S-scheme photocatalyst for efficient simultaneous removal of Cr(VI) and norfloxacin
|Chemical Engineering Journal|2024|54
Tailoring the CO2-selectivity of interfacial polymerized thin film nanocomposite membrane via the barrier effect of functionalized boron nitride
|Journal of Colloid and Interface Science|2021|19