Wang, X.; Jia, J.; Pan, Z.; Li, C.; Du, Z.; Jia, R.
Comparative Study of UV-Based AOPs for Degradation of Hydrophilic Ribavirin and Hydrophobic Chloroquine Phosphate: Performance, Radical Pathways, EEO, and Water Matrix Effects. Water 2026, 18, 1548.
https://doi.org/10.3390/w18131548
AMA Style
Wang X, Jia J, Pan Z, Li C, Du Z, Jia R.
Comparative Study of UV-Based AOPs for Degradation of Hydrophilic Ribavirin and Hydrophobic Chloroquine Phosphate: Performance, Radical Pathways, EEO, and Water Matrix Effects. Water. 2026; 18(13):1548.
https://doi.org/10.3390/w18131548
Chicago/Turabian Style
Wang, Xicheng, Junqi Jia, Zhangbin Pan, Congcong Li, Zhenqi Du, and Ruibao Jia.
2026. "Comparative Study of UV-Based AOPs for Degradation of Hydrophilic Ribavirin and Hydrophobic Chloroquine Phosphate: Performance, Radical Pathways, EEO, and Water Matrix Effects" Water 18, no. 13: 1548.
https://doi.org/10.3390/w18131548
APA Style
Wang, X., Jia, J., Pan, Z., Li, C., Du, Z., & Jia, R.
(2026). Comparative Study of UV-Based AOPs for Degradation of Hydrophilic Ribavirin and Hydrophobic Chloroquine Phosphate: Performance, Radical Pathways, EEO, and Water Matrix Effects. Water, 18(13), 1548.
https://doi.org/10.3390/w18131548