Soto-Herranz, M.; Sánchez-Báscones, M.; AntolĂn-RodrĂguez, J.M.; Vanotti, M.B.; MartĂn-Ramos, P.
Effect of Acid Flow Rate, Membrane Surface Area, and Capture Solution on the Effectiveness of Suspended GPM Systems to Recover Ammonia. Membranes 2021, 11, 538.
https://doi.org/10.3390/membranes11070538
AMA Style
Soto-Herranz M, Sánchez-Báscones M, AntolĂn-RodrĂguez JM, Vanotti MB, MartĂn-Ramos P.
Effect of Acid Flow Rate, Membrane Surface Area, and Capture Solution on the Effectiveness of Suspended GPM Systems to Recover Ammonia. Membranes. 2021; 11(7):538.
https://doi.org/10.3390/membranes11070538
Chicago/Turabian Style
Soto-Herranz, MarĂa, Mercedes Sánchez-Báscones, Juan Manuel AntolĂn-RodrĂguez, MatĂas B. Vanotti, and Pablo MartĂn-Ramos.
2021. "Effect of Acid Flow Rate, Membrane Surface Area, and Capture Solution on the Effectiveness of Suspended GPM Systems to Recover Ammonia" Membranes 11, no. 7: 538.
https://doi.org/10.3390/membranes11070538
APA Style
Soto-Herranz, M., Sánchez-Báscones, M., AntolĂn-RodrĂguez, J. M., Vanotti, M. B., & MartĂn-Ramos, P.
(2021). Effect of Acid Flow Rate, Membrane Surface Area, and Capture Solution on the Effectiveness of Suspended GPM Systems to Recover Ammonia. Membranes, 11(7), 538.
https://doi.org/10.3390/membranes11070538