Superior enhancement of imbibition recovery by novel surfactant mixtures with a large hydrophobic group combined with nanosilica
Значительное повышение нефтеотдачи при капиллярной пропитке с использованием новых смесей поверхностно-активных веществ с крупной гидрофобной группой в сочетании с нанокремнезёмом
2023-03-20
SCID: 54.1/ba96akew
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Enhanced oil recoveryLow-permeability sandstone reservoirsSilica nanoparticlesSpontaneous imbibitionTPHS/AOS surfactant mixtures
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Abstract (AI)
Abstract Low interfacial tension (IFT) drainage and imbibition are effective methods for improving oil recovery from reservoirs that have low levels of oil or are tight (i.e., exhibit low oil permeability). It is critical to prepare a high efficient imbibition formula. In this work, a novel 2,4,6‐tris(1‐phenylethyl)phenoxy polyoxyethylene ether hydroxypropyl sodium sulfonate (TPHS) surfactant was synthesized and evaluated for imbibition. Its structure was confirmed by Fourier transform infrared spectroscopy and the interfacial tension (IFT) of the crude oil/0.07% TPHS solution was 0.276 mN/m. When 0.1 wt% TPHS was mixed with 0.2 wt% alpha olefin sulfonate (AOS), the IFT was lowered to 6 × 10 −2 mN/m. The synergy between nanoparticles (NPs) and TPHS/AOS mixed surfactant was studied by IFT, contact angle on sandstone substrates, zeta potential, and spreading dynamics through microscopic methods. The results show that the surfactant likely adsorbs to the NP surface and that NP addition can help the surfactant desorb crude oil from the glass surface. With the addition of 0.05 wt% SiO 2 NPs (SNPs), the imbibition oil recovery rate increased dramatically from 0.32%/h to 0.87%/h. The spontaneous imbibition recovery increased by 4.47% for original oil in place (OOIP). Compared to flooding by TPHS/AOS surfactant solutions, the oil recovery of forced imbibition in the sand‐pack increased by 12.7% OOIP, and the water breakthrough time was delayed by 0.13 pore volumes (PV) when 0.05% SNPs were added. This paper paves the way for enhanced oil recovery in low‐permeability sandstone reservoirs using novel TPHS/AOS surfactants and SNPs.
Key Findings
1
A novel TPHS surfactant was synthesized for enhanced imbibition oil recovery and structurally confirmed using Fourier transform infrared spectroscopy.
2
Adding 0.05 wt% SiO2 nanoparticles increased the imbibition oil recovery rate from 0.32%/h to 0.87%/h and raised spontaneous recovery by 4.47% OOIP.
3
In sand-pack forced imbibition, 0.05 wt% SiO2 nanoparticles improved oil recovery by 12.7% OOIP over TPHS/AOS flooding and delayed water breakthrough by 0.13 PV.
4
Nanoparticles likely adsorb onto surfactant molecules and facilitate crude-oil desorption from glass surfaces, enhancing surfactant-mediated displacement.
5
The crude oil/0.07% TPHS solution achieved an interfacial tension of 0.276 mN/m, while 0.1 wt% TPHS with 0.2 wt% AOS reduced IFT to 6 × 10−2 mN/m.
Research Object
TPHS/AOS surfactant mixtures combined with nanosilica (SiO2 nanoparticles) for oil recovery from low-permeability sandstone reservoirs
Research Subject
The effects of surfactant–nanosilica synergy on interfacial properties, spontaneous and forced imbibition oil recovery, recovery rate, and water breakthrough in sandstone
Publication Details
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2023-03-20
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