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Biological mechanisms of tetracycline deep mineralization in membrane aeration biofilm reactors following Mn-based catalytic oxidation | Synapse
March 3, 2026
Biological mechanisms of tetracycline deep mineralization in membrane aeration biofilm reactors following Mn-based catalytic oxidation
XL
Xinyan Li
Zhejiang University
XN
Xin-xin Ni
HZ
He-Ping Zhao
Ecology and Ecosystem Health
Key Points
Deep mineralization of tetracycline highlights significant efficacy in reducing antibiotic levels, and oxidative processes play a crucial role.
The catalytic oxidation process achieved over 80% removal of tetracycline within 24 hours in engineered biofilm systems.
Observational analysis of membrane aeration biofilm reactors demonstrates effective interaction with manganese for degradation.
Potential advancements in wastewater treatment highlight the importance of manganese-based catalytic mechanisms for deeper purification.
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Li et al. (Wed,) studied this question.
synapsesocial.com/papers/69a75bd3c6e9836116a23d95
https://doi.org/https://doi.org/10.1016/j.jwpe.2026.109570