Degradation of tetracycline by nitrogen-doped biochar as a peroxydisulfate activator: Nitrogen doping pattern and non-radical mechanism
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Elsevier BV
Reference81 articles.
1. Occurrence and removal of antibiotics from industrial wastewater;Akhil;Environ. Chem. Lett.,2021
2. Quest for groundwater quality sustainability–lessons from 40 years of remediation in the United States;Andrews;Sustain. Horiz.,2022
3. Degradation of tetracycline by medium pressure UV-activated peroxymonosulfate process: influencing factors, degradation pathways, and toxicity evaluation;Ao;Chem. Eng. J.,2019
4. Pyrrolic N-rich biochar without exogenous nitrogen doping as a functional material for bisphenol A removal: performance and mechanism;Cai;Appl. Catal. B Environ.,2021
5. Super facile one-step synthesis of sugarcane bagasse derived N-doped porous biochar for adsorption of ciprofloxacin;Che;J. Environ. Manage.,2023
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