Search Results - "Kalam, Shams"
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Surfactant Adsorption Isotherms: A Review
Published in ACS omega (07-12-2021)“…The need to minimize surfactant adsorption on rock surfaces has been a challenge for surfactant-based, chemical-enhanced oil recovery (cEOR) techniques…”
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2
A novel empirical correlation for waterflooding performance prediction in stratified reservoirs using artificial intelligence
Published in Neural computing & applications (01-04-2021)“…Water has been used as an injected fluid for decades to improve oil recovery, commonly known as waterflooding. Simulating this process is very expensive,…”
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3
Static and dynamic adsorption of a gemini surfactant on a carbonate rock in the presence of low salinity water
Published in Scientific reports (24-07-2023)“…In chemical enhanced oil recovery (cEOR) techniques, surfactants are extensively used for enhancing oil recovery by reducing interfacial tension and/or…”
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4
Impact of Spacer Nature and Counter Ions on Rheological Behavior of Novel Polymer-Cationic Gemini Surfactant Systems at High Temperature
Published in Polymers (01-05-2020)“…Compatible surfactant-polymer (SP) hybrid systems at high temperature are in great demand due to the necessity of chemical flooding in high-temperature oil…”
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5
Carbon dioxide sequestration in underground formations: review of experimental, modeling, and field studies
Published in Journal of petroleum exploration and production technology (01-01-2021)“…Carbon dioxide has gradually found widespread usage in the field of science and engineering while various efforts have focused on ways to combat the menace…”
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6
A review on surfactant retention on rocks: mechanisms, measurements, and influencing factors
Published in Fuel (Guildford) (01-06-2021)“…•Surfactant retention directly affects the economics of surfactant-based flooding in reservoirs.•Underlying mechanisms for surfactant retention include…”
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7
Data-driven modeling to predict adsorption of hydrogen on shale kerogen: Implication for underground hydrogen storage
Published in International journal of coal geology (01-12-2023)Get full text
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8
Predicting absolute adsorption of CO2 on Jurassic shale using machine learning
Published in Fuel (Guildford) (01-02-2025)“…•Different ML methods were employed to predict CO2 adsorption in shale.•Pressure is the most significant input parameter influencing CO2 adsorption.•Predictive…”
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Adsorption reduction of a gemini surfactant on carbonate rocks using formic acid: Static and dynamic conditions
Published in Fuel (Guildford) (01-08-2023)“…•A fundamental concept of the point of zero charge (PZC) was applied to reduce the adsorption of a cationic gemini surfactant (GS12) on carbonates.•Lowering…”
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10
A Mini-Review on Underground Hydrogen Storage: Production to Field Studies
Published in Energy & fuels (15-06-2023)“…Hydrogen has become increasingly popular as one of the alternative fuels to reduce greenhouse gas emissions. Storing hydrogen in geological structures is a…”
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11
Experimental investigation of GO-HPAM and SiO2-HPAM composite for cEOR: Rheology, interfacial tension reduction, and wettability alteration
Published in Colloids and surfaces. A, Physicochemical and engineering aspects (20-03-2022)“…The interest in designing and developing polymeric nanoparticles has grown in recent years. The inclusion of nanoparticles in polymer solutions enhances…”
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12
Shale brittleness prediction using machine learning; a Middle East basin case study
Published in AAPG bulletin (01-11-2022)“…Brittleness index (BI) of rocks can help target the most suitable formation for the hydraulic fracturing stimulation in the shale reservoirs. The two most…”
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13
Synergistic effect of graphene oxide and partially hydrolyzed polyacrylamide for enhanced oil recovery: Merging coreflood experimental and CFD modeling approaches
Published in Journal of molecular liquids (15-01-2024)“…[Display omitted] •The role of GO-HPAM nanocomposite in EOR is investigated.•Examination of bonding, integrity, and stability by experimentation and…”
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14
Adsorption Mechanisms of a Novel Cationic Gemini Surfactant onto Different Rocks
Published in Energy & fuels (02-06-2022)“…The need to reduce surfactant adsorption on rock surfaces has been a difficult task in chemical enhanced oil recovery, as it directly impacts the economics of…”
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15
Oil/Water Interfacial Tension in the Presence of Novel Polyoxyethylene Cationic Gemini Surfactants: Impact of Spacer Length, Unsaturation, and Aromaticity
Published in Energy & fuels (21-05-2020)“…This study was aimed at understanding how the interfacial tension (IFT) between novel ethoxylated cationic gemini surfactants and oil is affected by various…”
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16
Coreflood investigation of HPAM/GO-SiO2 composite through wettability alteration
Published in Journal of molecular liquids (01-02-2023)“…•The present work addresses parameter’s affecting desired wettability of nanoparticles in enhanced oil recovery.•Characterization of synthesized nanoparticles…”
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17
Ionic Liquids as Clay Swelling Inhibitors: Adsorption Study
Published in Energy & fuels (07-04-2022)“…This study investigates the inhibition performance of ionic liquids (ILs) on clay (montmorillonite) swelling and the possible inhibition mechanism. The…”
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18
Adsorption Characteristics of a Cationic Gemini Surfactant on Carbonate Outcrops: Adsorption Reduction Using Methylene Blue
Published in Energy & fuels (06-04-2023)“…Surfactant adsorption has been a great challenge for surfactant-based chemically enhanced oil recovery (cEOR) techniques as it directly reflects the overall…”
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19
Static Adsorption of Novel Synthesized Zwitterionic Surfactants on Carbonates
Published in Energy & fuels (13-05-2024)“…Surfactants are injected as additives into oil reservoirs to improve the efficiency of pore-scale displacement. Lately, zwitterionic surfactants have received…”
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Impact of a novel HPAM/GO-SiO2 nanocomposite on interfacial tension: Application for enhanced oil recovery
Published in Petroleum science and technology (27-01-2022)“…The article discusses experimental investigation of a polymeric nanocomposite composed of HPAM/GO-SiO 2 . The DLS, zeta potential, scanning electron…”
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