Sulfonated Graphene Oxide Nanofluid: Potential Applications for Enhanced Oil Recovery

Author(s):  
Brayan Alberto Arenas-Blanco ◽  
Elcy Mariana Pérez-Rodríguez ◽  
Rafael Cabanzo Hernández ◽  
Nicolás Santos-Santos ◽  
Enrique Mejía-Ospino
Fuel ◽  
2019 ◽  
Vol 237 ◽  
pp. 344-351 ◽  
Author(s):  
Taiheng Yin ◽  
Zihao Yang ◽  
Zhaoxia Dong ◽  
Meiqin Lin ◽  
Juan Zhang

Fuel ◽  
2022 ◽  
Vol 310 ◽  
pp. 122299
Author(s):  
Cláudia K.B. de Vasconcelos ◽  
Felipe S. Medeiros ◽  
Bruna R.S. Diniz ◽  
Marcelo M. Viana ◽  
Vinicius Caliman ◽  
...  

Nanomaterials ◽  
2018 ◽  
Vol 8 (8) ◽  
pp. 603 ◽  
Author(s):  
Albert Barrabino ◽  
Torleif Holt ◽  
Erik Lindeberg

Graphene oxide, nanographene oxide and partially reduced graphene oxide have been studied as possible foam stabilizing agents for CO2 based enhanced oil recovery. Graphene oxide was able to stabilize CO2/synthetic sea water foams, while nanographene oxide and partially reduced graphene oxide were not able to stabilize foams. The inability of nanographene oxide for stabilizing foams was explained by the increase of hydrophilicity due to size decrease, while for partially reduced graphene oxide, the high degree of reduction of the material was considered to be the reason. Graphene oxide brine dispersions showed immediate gel formation, which improved foam stability. Particle growth due to layer stacking was also observed. This mechanism was detrimental for foam stabilization. Gel formation and particle growth caused these particles to block pores and not being filterable. The work indicates that the particles studied are not suitable for CO2 enhanced oil recovery purposes.


Author(s):  
Lucas Stori de Lara ◽  
Thiago Voltatoni ◽  
Manuella Caramelo Rodrigues ◽  
Caetano Rodrigues Miranda ◽  
Sergio Brochsztain

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