18 results on '"Mai, Jiamin"'
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2. Role of bipyridyl in enhancing ferrate oxidation toward micropollutants
3. Singlet oxygen is also involved in the formation of hypoiodous acid during the transformation of phenolic pollutants by peracetic acid in the presence of iodide
4. Enhanced hydroxyl radical generation for micropollutant degradation in the In2O3/Vis-LED process through the addition of periodate
5. Insight into wavelength-dependent UVA-LED/chlorine process for micropollutant degradation: Performance, mechanism, and effects of water matrix
6. Generation of hydroxyl radicals via activation of Cr(VI) by UVA-LED for rapid decontamination: The important role of Cr(V)
7. Novel solar-driven ferrate(VI) activation system for micropollutant degradation: Elucidating the role of Fe(IV) and Fe(V)
8. Activation of ferrate(VI) by sulfite for effectively degrading iodinated contrast media and synchronously controlling I-DBPs formation
9. Enhanced removal of organoarsenic by chlorination: Kinetics, effect of humic acid, and adsorbable chlorinated organoarsenic
10. Insight into enhanced activation of permanganate under simulated solar irradiation: Rapid formation of manganese species
11. A Numerical Simulation Study on DC Positive Corona Discharge Characteristics at the Conductor’s Tip Defect
12. Detection of Insulator Strings in Aerial Photography Based on Lightweight CenterNet
13. Role of Bipyridyl in Enhancing Ferrate Oxidation Toward Micropollutants
14. Singlet Oxygen is Also Involved in the Formation of Hypoiodous Acid During the Transformation of Phenolic Pollutants by Peracetic Acid in the Presence of Iodide
15. Enhanced Permanganate Activation under UVA-LED Irradiation: Unraveled Mechanism Involving Manganese Species and Hydroxyl Radical
16. UVA-LED-Assisted Activation of the Ferrate(VI) Process for Enhanced Micropollutant Degradation: Important Role of Ferrate(IV) and Ferrate(V)
17. UV/chlorine process for degradation of benzothiazole and benzotriazole in water: Efficiency, mechanism and toxicity evaluation
18. UVA-LED-Assisted Activation of the Ferrate(VI) Process for Enhanced Micropollutant Degradation: Important Role of Ferrate(IV) and Ferrate(V).
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