Bowen Yang
Qingdao University
8 Papers
1 Citations
Bowen Yang is an academic researcher from Qingdao University. The author has contributed to research in topics: Chemistry & Graphene. The author has co-authored 1 publications.
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Papers
Advances in preparation, application in contaminant removal, and environmental risks of biochar-based catalysts: a review
TL;DR: In this paper , a review of the current application of biochar-based catalysts in redox systems, Fenton-like systems, sonocatalytic systems and photocatalysis systems is presented.
Applying Dynamic Magnetic Field To Promote Anaerobic Digestion via Enhancing the Electron Transfer of a Microbial Respiration Chain.
Bowen Yang,Qi Yu,Yaobin Zhang +2 more
TL;DR: In this article , a dynamic magnetic field (DMF) was placed outside a digester to induce an electromotive force to electrically promote anaerobic digestion, and the results showed that acidification and methanogenesis that involve electron transfer of respiration chains were promoted with the DMF, while solubilization and hydrolysis less related to respiration chain were not enhanced.
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Recent advances on the magnetic nanoparticle–based nanocomposites for magnetic induction hyperthermia of tumor: a short review
Yuan-Yuan Lian,Lin Wang,Junyang Cao,Tingting Liu,Zhenju Xu,Bowen Yang,Tianqiao Huang,Xiao-Dan Jiang,Nannan Wu +8 more
- 29 Oct 2021
TL;DR: In this paper, the authors summarized the methods for improving the heating generation efficiency of magnetic NPs, which is the key to the treating effectiveness, and summarized recent development for MIH and their combination therapy based on the current reports.
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Electrochemical post-treatment of bimetallic-ICP/RGO precursor for Z-scheme CuOx·Ag2O/RGO hetero-structure with catalytic activity enhancement for visible-light-driven photo-Fenton degradation of tetracycline
TL;DR: In this paper , rationally designed bimetallic infinite coordination polymer (ICP) was mixed with reduced graphene oxide (RGO) to serve as precursors for the preparation of CuOx·Ag2O/RGO hetero-structure.
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Promoted BPA degradation in food waste leachate via alkali-fluffed CoFe2O4@CoSiOx activated PMS under the assistance of inherent acetate
TL;DR: In this paper , an alkali post-treatment approach was performed to obtain the fluffed hybrid-cobalt core-shell nano-catalyst (AF-CoFe 2 O 4 @CoSiO x ) for the activation of PMS to degrade BPA with high efficiency.
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