Medina, O.E.; Céspedes, S.; Zabala, R.D.; Franco, C.A.; Pérez-Cadenas, A.F.; Carrasco-MarÃn, F.; Lopera, S.H.; Cortés, F.B.; Franco, C.A.
A Theoretical and Experimental Approach to the Analysis of Hydrogen Generation and Thermodynamic Behavior in an In Situ Heavy Oil Upgrading Process Using Oil-Based Nanofluids. Catalysts 2022, 12, 1349.
https://doi.org/10.3390/catal12111349
AMA Style
Medina OE, Céspedes S, Zabala RD, Franco CA, Pérez-Cadenas AF, Carrasco-MarÃn F, Lopera SH, Cortés FB, Franco CA.
A Theoretical and Experimental Approach to the Analysis of Hydrogen Generation and Thermodynamic Behavior in an In Situ Heavy Oil Upgrading Process Using Oil-Based Nanofluids. Catalysts. 2022; 12(11):1349.
https://doi.org/10.3390/catal12111349
Chicago/Turabian Style
Medina, Oscar E., Santiago Céspedes, Richard D. Zabala, Carlos A. Franco, AgustÃn F. Pérez-Cadenas, Francisco Carrasco-MarÃn, Sergio H. Lopera, Farid B. Cortés, and Camilo A. Franco.
2022. "A Theoretical and Experimental Approach to the Analysis of Hydrogen Generation and Thermodynamic Behavior in an In Situ Heavy Oil Upgrading Process Using Oil-Based Nanofluids" Catalysts 12, no. 11: 1349.
https://doi.org/10.3390/catal12111349
APA Style
Medina, O. E., Céspedes, S., Zabala, R. D., Franco, C. A., Pérez-Cadenas, A. F., Carrasco-MarÃn, F., Lopera, S. H., Cortés, F. B., & Franco, C. A.
(2022). A Theoretical and Experimental Approach to the Analysis of Hydrogen Generation and Thermodynamic Behavior in an In Situ Heavy Oil Upgrading Process Using Oil-Based Nanofluids. Catalysts, 12(11), 1349.
https://doi.org/10.3390/catal12111349