Mengkai Li
Affiliations: | 2009-2013 | Research Center for Eco-Environmental Sciences | Chinese Academy of Sciences, Beijing, China |
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Publications
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Li W, Hu Y, Li Y, et al. (2025) Performance of ultrafiltration-ozonation for municipal wastewater reclamation under rainstorm conditions: Impacts of DOM surge on micropollutant removal and associated risks. Water Research. 280: 123530 |
Zhou TH, Liang YF, Sun Z, et al. (2025) [Synergistic Disinfection Effects of Dual-wavelength Ultraviolet and Its Impact on Photoreactivation and Dark Repair]. Huan Jing Ke Xue= Huanjing Kexue. 46: 1443-1449 |
El-Aswar EI, Li M, Huang Y, et al. (2025) Enhanced vacuum ultraviolet/ultraviolet process for advanced water treatment by using air micro/nano bubbles. Journal of Hazardous Materials. 489: 137602 |
Li M, Zheng Y, Huang Y, et al. (2025) Calcium scaling on the quartz sleeve of ultraviolet reactor: On-line measurement and model prediction. Water Research. 275: 123203 |
Sun Z, Li M, Wu Z, et al. (2025) Water Disinfection with Dual-Wavelength (222 + 275 nm) Ultraviolet Radiations: Microbial Inactivation and Reactivation. Environmental Science & Technology |
Qin X, Liu X, He Y, et al. (2024) Kinetic modeling of sulfonamide degradation by UV/HO: Deduction of R modeling and application. Chemosphere. 143836 |
Liu L, Sun Z, Feng J, et al. (2024) Potential of solar photodegradation of antibiotics in shallow ditches: Kinetics, the role of dissolved organic matter and prediction models. The Science of the Total Environment. 176725 |
Li W, Chen R, Zhang S, et al. (2024) Application of high-dose UV irradiation as nanofiltration pretreatment for drinking water production: Organic fouling mitigation and micropollutant removal. Water Research. 266: 122348 |
Li M, Lou F, Huang Y, et al. (2023) Electrical Energy Consumption of Multiscale UV-AOP Reactors for Micropollutant Removal in Drinking Water: Facilitated Prediction by Reaction Rate Constants Measured on a Mini-Fluidic Photoreaction System. Environmental Science & Technology |
Huang M, Li YS, Zhang CQ, et al. (2022) Facilely tuning the intrinsic catalytic sites of the spinel oxide for peroxymonosulfate activation: From fundamental investigation to pilot-scale demonstration. Proceedings of the National Academy of Sciences of the United States of America. 119: e2202682119 |