MartÃnez-Espinosa, J.A.; Leyva-Ramos, R.; Villela-MartÃnez, D.E.; Carrales-Alvarado, D.H.; Medina, D.I.
CO2 Reactivation of Activated Carbon to Improve Its Adsorption Capacity and Rate Toward Chlorpheniramine. Water 2025, 17, 874.
https://doi.org/10.3390/w17060874
AMA Style
MartÃnez-Espinosa JA, Leyva-Ramos R, Villela-MartÃnez DE, Carrales-Alvarado DH, Medina DI.
CO2 Reactivation of Activated Carbon to Improve Its Adsorption Capacity and Rate Toward Chlorpheniramine. Water. 2025; 17(6):874.
https://doi.org/10.3390/w17060874
Chicago/Turabian Style
MartÃnez-Espinosa, Jesus A., Roberto Leyva-Ramos, Diana E. Villela-MartÃnez, Damarys H. Carrales-Alvarado, and Dora I. Medina.
2025. "CO2 Reactivation of Activated Carbon to Improve Its Adsorption Capacity and Rate Toward Chlorpheniramine" Water 17, no. 6: 874.
https://doi.org/10.3390/w17060874
APA Style
MartÃnez-Espinosa, J. A., Leyva-Ramos, R., Villela-MartÃnez, D. E., Carrales-Alvarado, D. H., & Medina, D. I.
(2025). CO2 Reactivation of Activated Carbon to Improve Its Adsorption Capacity and Rate Toward Chlorpheniramine. Water, 17(6), 874.
https://doi.org/10.3390/w17060874