Wang, C.; Li, X.; Xia, J.; Ni, J.; Wang, W.; Jin, G.; Cui, K.
Enhanced Oil Recovery Mechanism Mediated by Reduced Miscibility Pressure Using Hydrocarbon-Degrading Bacteria During CO2 Flooding in Tight Oil Reservoirs. Energies 2025, 18, 1123.
https://doi.org/10.3390/en18051123
AMA Style
Wang C, Li X, Xia J, Ni J, Wang W, Jin G, Cui K.
Enhanced Oil Recovery Mechanism Mediated by Reduced Miscibility Pressure Using Hydrocarbon-Degrading Bacteria During CO2 Flooding in Tight Oil Reservoirs. Energies. 2025; 18(5):1123.
https://doi.org/10.3390/en18051123
Chicago/Turabian Style
Wang, Chengjun, Xinxin Li, Juan Xia, Jun Ni, Weibo Wang, Ge Jin, and Kai Cui.
2025. "Enhanced Oil Recovery Mechanism Mediated by Reduced Miscibility Pressure Using Hydrocarbon-Degrading Bacteria During CO2 Flooding in Tight Oil Reservoirs" Energies 18, no. 5: 1123.
https://doi.org/10.3390/en18051123
APA Style
Wang, C., Li, X., Xia, J., Ni, J., Wang, W., Jin, G., & Cui, K.
(2025). Enhanced Oil Recovery Mechanism Mediated by Reduced Miscibility Pressure Using Hydrocarbon-Degrading Bacteria During CO2 Flooding in Tight Oil Reservoirs. Energies, 18(5), 1123.
https://doi.org/10.3390/en18051123