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Molecular design and applications of a nanostructure green Tripodal surface active ionic liquid in enhanced oil recovery: Interfacial tension reduction, wettability alteration, and emulsification 被引量:2
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作者 Mona Kharazi Javad Saien +1 位作者 Morteza Torabi Mohammad Ali Zolfigol 《Petroleum Science》 SCIE EI CAS CSCD 2023年第6期3530-3539,共10页
Surface active ionic liquids (SAILs) are considered as prominent materials in enhanced oil recovery thanks to their high interfacial activity. This study reports the preparation and applications of a nanostructure Tri... Surface active ionic liquids (SAILs) are considered as prominent materials in enhanced oil recovery thanks to their high interfacial activity. This study reports the preparation and applications of a nanostructure Tripodal imidazolium SAIL as an environmentally-friendly substitute to the conventional surfactants. The product has a star-like molecular structure centered by a triazine spacer, namely [(C_(4)im)_(3)TA][Cl_(3)], prepared by a one-step synthesis method and characterized with FT-IR, NMR, XRD, and SEM analysis methods. The interfacial tension of the system was decreased to about 78% at critical micelle concentration of less than 0.08 mol·dm^(−3). Increasing temperature, from 298.2 to 323.2 K, improved this capability. The solid surface wettability was changed from oil-wet to water-wet and 80% and 77% stable emulsions of crude oil–aqueous solutions were created after one day and one week, respectively. Compared to the Gemini kind homologous SAILs, the superior effects of the Tripodal SAIL were revealed and attributed to the strong hydrophobic branches in the molecule. The Frumkin adsorption isotherm precisely reproduced the generated IFT data, and accordingly, the adsorption and thermodynamic parameters were determined. 展开更多
关键词 Tripodal ionic liquids Green materials Enhanced oil recovery interfacial tension WETTABILITY EMULSIFICATION
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The role of CO2 and ion type in the dynamic interfacial tension of acidic crude oil/carbonated brine
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作者 Mostafa Lashkarbolooki Ali Zeinolabedini Hezave Shahab Ayatollahi 《Petroleum Science》 SCIE CAS CSCD 2019年第4期850-858,共9页
The e ects of CO2 and salt type on the interfacial tension(IFT) between crude oil and carbonated brine(CB) have not been fully understood. This study focuses on measuring the dynamic IFT between acidic crude oil with ... The e ects of CO2 and salt type on the interfacial tension(IFT) between crude oil and carbonated brine(CB) have not been fully understood. This study focuses on measuring the dynamic IFT between acidic crude oil with a total acid number of 1.5 mg KOH/g and fully CO2-saturated aqueous solutions consisting of 15,000 ppm of KCl, NaCl, CaCl2 and MgCl2 at 30 °C and a wide range of pressures(500–4000 psi). The results of IFT measurements showed that solvation of CO2 into all the studied aqueous solutions led to an increase in IFT of acidic crude oil(i.e., comparison of IFT of crude oil/CB and crude oil/brine), while no significant e ect was observed for pressure. In contrast, the obtained results of studied salts indicated a positive e ect on the IFT reduction of acidic crude oil/carbonated water(CW)(i.e., comparison of IFT of crude oil/CB and crude oil/CW). 展开更多
关键词 Carbonated BRINE interfacial tension Crude oil Enhanced oil recovery(EOR) CO2 SEQUESTRATION
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Effect of Alkali on Daqing Crude Oil/Water Interfacial Properties
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作者 Guo Jixiang Li Mingyuan Lin Meiqin Wu Zhaoliang 《Petroleum Science》 SCIE CAS CSCD 2007年第1期66-69,共4页
Alkaline-surfactant-polymer (ASP) flooding using sodium hydroxide as the alkali component to enhance oil recovery in Daqing Oilfield, northeast China has been successful, but there are new problems in the treatment ... Alkaline-surfactant-polymer (ASP) flooding using sodium hydroxide as the alkali component to enhance oil recovery in Daqing Oilfield, northeast China has been successful, but there are new problems in the treatment of produced crude. The alkali added forms stable water-in-crude oil emulsion, hence de-emulsification process is necessary to separate oil and water. The problems in enhanced oil recovery with ASP flooding were investigated in laboratory by using fractions of Daqing crude oil. The oil was separated into aliphatics, aromatics, resin and asphaltene fractions. These fractions were then mixed with an additive-free jet fuel to form model oils. The interfacial properties, such as interfacial tension and interracial pressure of the systems were also measured, which together with the molecular parameters of the fractions were all used to investigate the problems in the enhanced oil recovery. In our work, it was found that sodium hydroxide solution reacts with the acidic hydrogen in the fractions of crude oil and forms soap-like interfacially active components, which accumulate at the crude oil-water interface. 展开更多
关键词 water-in-crude oil emulsion interfacial tension interfacial pressure
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Eco-friendly calcium alginate microspheres enable enhanced profile control and oil displacement
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作者 Xiao-Han Zhang Chang-Jing Zhou +6 位作者 Yuan-Xiang Xiao Bo Hui Yong-Gang Xie Yu-Bin Su Xin-Ru Li Jie Huang Mao-Chang Liu 《Petroleum Science》 SCIE EI CAS CSCD 2024年第3期1928-1943,共16页
Polymer microspheres(PMs),such as polyacrylamide,have been widely applied for enhanced oil recovery(EOR),yet with environmental concerns.Here,we report a microfluid displacement technology containing a bio-based eco-f... Polymer microspheres(PMs),such as polyacrylamide,have been widely applied for enhanced oil recovery(EOR),yet with environmental concerns.Here,we report a microfluid displacement technology containing a bio-based eco-friendly material,i.e.,calcium alginate(CaAlg)microspheres for EOR.Two dominant mechanisms responsible for EOR over Ca Alg fluid have been verified,including the microscopic oil displacement efficacy augmented by regulating capillary force(determined by the joint action of interfacial tension and wettability between different phases)and macroscopic sweep volume increment through profile control and mobility ratio reduction.This comprehensive effectiveness can be further impacted when the CaAlg microsphere is embellished ulteriorly by using appropriate amount of sodium dodecyl sulfonate(SDS).The core flooding and nuclear magnetic resonance(NMR)tests demonstrate that CaAlg-SDS microsphere can balance the interphase property regulation(wettability alteration and IFT reduction)and rheology properties,enabling simultaneous profile control and oil displacement.Excessive introduction of SDS will have a negative impact on rheological properties,which is not favored for EOR.Our results show that the involvement of 4-m M SDS will provide the best behavior,with an EOR rate of 34.38%.This cost-effective and environmentally-friendly bio-microspherebased microfluidic displacement technology is expected to achieve“green”oil recovery in future oilfield exploitation. 展开更多
关键词 Calcium alginate microspheres WETTABILITY interfacial tension RHEOLOGY VISCOELASTICITY Enhanced oil recovery(EOR)
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石墨烯用于提高原油采收率的研究进展
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作者 李玲玉 杨航 +3 位作者 陈楠 郭永华 李伟智 于萌 《化学世界》 2025年第1期7-12,共6页
石墨烯材料具有粒径小、易改性、吸附性强和高温稳定等特点,能够快速吸附于油水界面,在降低油水界面张力、改变岩石润湿性等方面效果显著,对于低渗透、高温高盐等油藏具有巨大的应用潜力。从石墨烯材料的制备及改性手段入手,总结了近年... 石墨烯材料具有粒径小、易改性、吸附性强和高温稳定等特点,能够快速吸附于油水界面,在降低油水界面张力、改变岩石润湿性等方面效果显著,对于低渗透、高温高盐等油藏具有巨大的应用潜力。从石墨烯材料的制备及改性手段入手,总结了近年来石墨烯材料在提高原油采收率方面的研究进展,阐述了石墨烯流体和石墨烯/聚合物二元流体的驱油机理和应用潜力,展望了未来的发展方向。 展开更多
关键词 石墨烯 提高采收率 界面张力 纳米驱油
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强化润湿表面活性剂复配体系构筑与性能评价
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作者 刘长龙 刘敬平 +3 位作者 邹剑 李琳 金晓 孙玥 《石油与天然气化工》 北大核心 2025年第1期88-94,共7页
目的阴离子-非离子型表面活性剂具有改变岩石表面润湿性的能力,然而其降低油水界面张力能力有限。因此,对其复配一种助表面活性剂以实现油水与油固界面协同调控,旨在解决残余油开发困难的问题。方法通过Williamson成醚反应,在非离子表... 目的阴离子-非离子型表面活性剂具有改变岩石表面润湿性的能力,然而其降低油水界面张力能力有限。因此,对其复配一种助表面活性剂以实现油水与油固界面协同调控,旨在解决残余油开发困难的问题。方法通过Williamson成醚反应,在非离子表面活性剂月桂酸二乙醇酰胺分子中引入磺酸根基团,合成强润湿调控主表面活性剂——月桂酸乙醇酰胺磺酸钠(HLDEA)。以降低油水界面张力为指标,复配表面活性剂壬基酚聚氧乙烯醚硫酸钠(NPES),得到最佳强化润湿高效驱油体系。对其降低油水界面张力性能、润湿调控性能、油膜剥离性能及驱油性能进行评价。结果质量分数为0.3%的HLDEA+NPES体系可将油水界面张力降低至3.8×10^(-3)mN/m,达到超低界面张力。此外,HLDEA+NPES分子可吸附至亲油岩石表面,将亲油岩心表面水下油滴接触角由41.34°增至162.53°,将疏水岩石表面调控为水下强疏油状态。75℃下,经HLDEA+NPES体系处理24 h,载玻片表面油膜面积减少75.3%,实现油膜整体剥离。结论室内岩心动态驱油实验结果表明,HLDEA+NPES体系可将采收率提高至63.60%,在水驱基础上提高了28.74个百分点,在超低界面张力体系驱基础上提高了7.80个百分点。HLDEA+NPES体系可同时达到超低界面张力和调控岩石表面润湿性,具有应用潜力。 展开更多
关键词 助表面活性剂 润湿调控 界面张力 油膜剥离 提高采收率
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生物表面活性剂槐糖脂的化学改性修饰进展
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作者 江建林 张超 +3 位作者 秦冰 乔富林 肖宇 周林碧 《石油学报(石油加工)》 北大核心 2025年第1期286-296,共11页
伴随国家环保要求不断提升和油田助剂绿色化导向,生物表面活性剂逐渐成为油田化学品的热点研究方向之一。然而,微生物发酵制备得到的生物表面活性剂产品结构多样性受限,难以满足油田提高采收率技术对油-水界面活性、乳化降黏能力、润湿... 伴随国家环保要求不断提升和油田助剂绿色化导向,生物表面活性剂逐渐成为油田化学品的热点研究方向之一。然而,微生物发酵制备得到的生物表面活性剂产品结构多样性受限,难以满足油田提高采收率技术对油-水界面活性、乳化降黏能力、润湿翻转性能等的多方面要求,因此有必要对其进行适当的化学改性修饰。基于此,以槐糖脂为典型代表,详细归纳了修饰有非离子型、阳离子型、两性离子型、阴离子型亲水基的改性产物及槐糖脂多聚物的合成进展。其中,非离子型改性槐糖脂的改性合成以酯交换和环氧加成反应为主,改性产物的界面活性、乳化、增溶、发泡能力相比槐糖脂均有所提升。阳离子型改性槐糖脂则通过先在分子中引入叔胺基团制得中间体,随后利用中间体与卤代烃之间的季铵化反应制备得到;若将中间体的叔胺基团进行氧化,即可制备得到氧化胺类两性离子型改性产物。阳离子型及两性离子型改性产物作为杀菌剂有应用前景。阴离子型改性产物通过糖环伯羟基的磺化反应制备得到,产物洗油效率相比改性前明显提升。通过槐糖脂之间的开环易位聚合(ROMP)反应,可制备得到槐糖脂多聚物。多聚物可作为高效药物递送载体使用,亦有望作为活性聚合物应用于原油开发领域。最后,对不同类型改性槐糖脂的合成方法和性能特点进行总结,并对该领域的发展方向进行了展望。 展开更多
关键词 生物表面活性剂 槐糖脂 化学改性修饰 油-水界面性质
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低渗水敏油藏降压增注体系性能评价——以大庆外围油田M区块为例
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作者 管公帅 唐超 +4 位作者 盖祥福 丁战军 孙文平 单永卓 王振 《石油地质与工程》 2025年第1期123-126,共4页
为解决低渗水敏油藏黏土矿物含量高、注水开发过程中出现水敏伤害而现有的酸化解堵措施效果差的问题,设计了由防膨缩膨剂、表面活性剂、增效剂、互溶剂组成的降压增注体系,具有解除黏土矿物水敏伤害、降低注水压力等特点,评价了该体系... 为解决低渗水敏油藏黏土矿物含量高、注水开发过程中出现水敏伤害而现有的酸化解堵措施效果差的问题,设计了由防膨缩膨剂、表面活性剂、增效剂、互溶剂组成的降压增注体系,具有解除黏土矿物水敏伤害、降低注水压力等特点,评价了该体系的缩膨率、防膨率及耐水洗能力、界面张力等性能。结果表明:该体系对黏土矿物的缩膨率为47.1%,可使已膨胀的黏土矿物脱水并体积收缩恢复原有的渗流通道,解除水敏伤害;对黏土矿物的防膨率为46.3%,且吸附性好,清水冲洗三次后其防膨率仍能达到28.5%,避免后续注水过程中黏土矿物再次水敏伤害,起到对储层长期保护的作用;体系的油水界面张力0.0208mN/m,可使滞留在孔隙中的原油流动,增加有效微孔数,同时还可以使油滴更容易变形通过狭小的喉道,减小渗流阻力,降低注水压力;降压增注体系可使水敏伤害后天然岩心渗透率得到明显提升,岩心渗透率恢复达73.2%;体系整体性能指标可以满足低渗水敏油藏注入井降压增注的需求。 展开更多
关键词 低渗透 水敏储层 缩膨 防膨 界面张力
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Experimental study on the mechanism of adsorption-improved imbibition in oil-wet tight sandstone by a nonionic surfactant for enhanced oil recovery 被引量:5
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作者 Yong-Peng Sun Yan Xin +1 位作者 Fang-Tao Lyu Cai-Li Dai 《Petroleum Science》 SCIE CAS CSCD 2021年第4期1115-1126,共12页
In recent years,production from tight oil reservoirs has increasingly supplemented production from conventional oil resources.Oil-wet formations account for a considerable proportion of tight oil reservoirs.Surfactant... In recent years,production from tight oil reservoirs has increasingly supplemented production from conventional oil resources.Oil-wet formations account for a considerable proportion of tight oil reservoirs.Surfactant can change wettability and reduce interfacial tension,thus resulting in a better oil recovery.In this manuscript,a nonionic surfactant was introduced for tight oil-wet reservoirs.The oil recovery in the oil-wet sandstone due to spontaneous imbibition was 8.59%lower than that of the waterwet sandstone due to surfactant.The 0.1%surfactant solution corresponded to the highest imbibition recovery rate of 27.02%from the oil-wet sample.With the surfactant treatment,the treated core quickly changed from weakly oil-wet to weakly water-wet.The capillary force acted as the driving force and promoted imbibition.The optimal surfactant adsorption quantity in the oil-wet sandstone was observed in the sample at concentrations ranging from 0.1%to 0.3%,which also corresponded to the highest oil recovery.Analysis of the inverse Bond number NB-1 suggested that the driving force was gravity for brine imbibition in the oil-wet cores and that it was capillary force for surfactant imbibition in the oil-wet cores.When the surfactant concentration was lower than the critical micelle concentration,the surfactant concentration was negatively correlated with the inverse Bond number and positively correlated with the oil recovery rate.When the surfactant concentration was higher than the critical micelle concentration,the oil recovery increased with a smaller interfacial tension.Nuclear magnetic resonance suggested that the movable pore and pore throat size in the oil-wet sample decreased from 0.363 mm in the untreated rock to 0.326 mm with the surfactant treatment,which indicated that the surfactant improved the flow capacity of the oil.The findings of this study can help to better understand the adsorption impact of surfactants on the characteristics of the oil/water and solid/liquid interfaces.The imbibition mechanism in oil-wet tight sandstone reservoirs was further revealed.These systematic approaches help to select appropriate surfactants for better recovery in oil-wet tight sandstone reservoirs through imbibition. 展开更多
关键词 Tight oil reservoir ADSORPTION Enhanced oil recovery SURFACTANT WETTABILITY interfacial tension
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A review of fluid displacement mechanisms in surfactant-based chemical enhanced oil recovery processes:Analyses of key influencing factors 被引量:9
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作者 Ahmed Bashir Amin Sharifi Haddad Roozbeh Rafati 《Petroleum Science》 SCIE CAS CSCD 2022年第3期1211-1235,共25页
Surfactant-based oil recovery processes are employed to lower the interfacial tension in immiscible displacement processes,change the wettability of rock to a more water-wet system and emulsify the oil to displace it ... Surfactant-based oil recovery processes are employed to lower the interfacial tension in immiscible displacement processes,change the wettability of rock to a more water-wet system and emulsify the oil to displace it in subsurface porous media.Furthermore,these phenomena can reduce the capillary pressure and enhance spontaneous imbibition.The key factors affecting such immiscible displacement process are temperature,salinity and p H of the fluids,surfactant concentration and adsorption.Therefore,before any surfactant flooding process is applied,extensive studies of fluid-fluid and rock-fluid interactions are needed.The use of other chemicals along with surfactants in chemical enhanced oil recovery(c EOR)processes have been widely considered to exploit the synergy of individual chemicals and complement the weakness arises from each of them during immiscible displacement of fluids in porous media.Therefore,such combinations of chemicals lead to alkaline-surfactant(AS),surfactantpolymer(SP),alkaline-surfactant-polymer(ASP),and nanoparticle-surfactant(NS)flooding processes,among others.In this review study,we categorised the role and displacement mechanisms of surfactants and discussed the key factors to be considered for analysing the fluid displacement in porous media. 展开更多
关键词 Alkaline surfactant(AS)flooding Alkaline-surfactant-polymer(ASP)flooding Enhanced oil recovery(EOR) interfacial tension(IFT) Nanoparticle-surfactant(NS)flooding Surfactant adsorption Surfactant-polymer(SP)flooding Wettability alteration
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Experimental investigation into Fe3O4/SiO2 nanoparticle performance and comparison with other nanofluids in enhanced oil recovery 被引量:1
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作者 Yousef Kazemzadeh Behnam Dehdari +2 位作者 Zahra Etemadan Masoud Riazi Mohammad Sharifi 《Petroleum Science》 SCIE CAS CSCD 2019年第3期578-590,共13页
Nanofluids because of their surface characteristics improve the oil production from reservoirs by enabling different enhanced recovery mechanisms such as wettability alteration,interfacial tension(IFT)reduction,oil vi... Nanofluids because of their surface characteristics improve the oil production from reservoirs by enabling different enhanced recovery mechanisms such as wettability alteration,interfacial tension(IFT)reduction,oil viscosity reduction,formation and stabilization of colloidal systems and the decrease in the asphaltene precipitation.To the best of the authors’ knowledge,the synthesis of a new nanocomposite has been studied in this paper for the first time.It consists of nanoparticles of both SiO2 and Fe3O4.Each nanoparticle has its individual surface property and has its distinct effect on the oil production of reservoirs.According to the previous studies,Fe3O4 has been used in the prevention or reduction of asphaltene precipitation and SiO2 has been considered for wettability alteration and/or reducing IFTs in enhanced oil recovery.According to the experimental results,the novel synthesized nanoparticles have increased the oil recovery by the synergistic effects of the formed particles markedly by activating the various mechanisms relative to the use of each of the nanoparticles in the micromodel individually.According to the results obtained for the use of this nanocomposite,understanding reservoir conditions plays an important role in the ultimate goal of enhancing oil recovery and the formation of stable emulsions plays an important role in oil recovery using this method. 展开更多
关键词 Enhanced oil recovery ASPHALTENE precipitation WETTABILITY ALTERATION interfacial tension reduction Fe3O4/SiO2 NANOFLUID
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An experimental and numerical study of chemically enhanced water alternating gas injection 被引量:2
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作者 Saeed Majidaie Mustafa Onur Isa M.Tan 《Petroleum Science》 SCIE CAS CSCD 2015年第3期470-482,共13页
In this work, an experimental study combined with numerical simulation was conducted to investigate the potential of chemically enhanced water alternating gas (CWAG) injection as a new enhanced oil recovery method. ... In this work, an experimental study combined with numerical simulation was conducted to investigate the potential of chemically enhanced water alternating gas (CWAG) injection as a new enhanced oil recovery method. The unique feature of this new method is that it uses alkaline, surfactant, and polymer additives as a chemical slug which is injected during the water alternating gas (WAG) process to reduce the interfacial tension (IFT) and simultaneously improve the mobility ratio. In essence, the proposed CWAG process involves a combination of chemical flooding and immiscible carbon dioxide (CO2) injection and helps in IFT reduction, water blocking reduction, mobility control, oil swelling, and oil viscosity reduction due to CO2 dissolution. Its performance was compared with the conventional immiscible water alter- nating gas (I-WAG) flooding. Oil recovery utilizing CWAG was better by 26 % of the remaining oil in place after waterflooding compared to the recovery using WAG conducted under similar conditions. The coreflood data (cumulative oil and water production) were history mat- ched via a commercial simulator by adjusting the relative permeability curves and assigning the values of the rock and fluid properties such as porosity, permeability, and the experimentally determined IFT data. History matching ofthe coreflood model helped us optimize the experiments and was useful in determining the importance of the parameters influencing sweep efficiency in the CWAG process. The effectiveness of the CWAG process in pro- viding enhancement of displacement efficiency is evident in the oil recovery and pressure response observed in the coreflood. The results of sensitivity analysis on CWAG slug patterns show that the alkaline-surfactant-polymer injection is more beneficial after CO2 slug injection due to oil swelling and viscosity reduction. The CO2 slug size analysis shows that there is an optimum CO2 slug size, around 25 % pore volume which leads to a maximum oil recovery in the CWAG process. This study shows that the ultralow IFT system, i.e., IFT equaling 10 2 or 10 3 mN/ m, is a very important parameter in CWAG process since the water blocking effect can be minimized. 展开更多
关键词 Enhanced water alternating gas (CWAG) Enhanced oil recovery interfacial tension Mobilitycontrol ~ water blocking
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A novel nanofluid of modified carbon black nanoparticles for enhanced oil recovery in low permeability reservoirs 被引量:1
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作者 Guang Zhao Li-Hao Liang +3 位作者 Dong-Fang Lv Wen-Juan Ji Qing You Cai-Li Dai 《Petroleum Science》 SCIE EI CAS CSCD 2023年第3期1598-1607,共10页
A novel nanofluid of modified carbon black(MCB)nanoparticles was initially developed for enhanced oil recovery(EOR)in low permeability reservoirs.The MCB nanoparticles were obtained via a three-step reaction involving... A novel nanofluid of modified carbon black(MCB)nanoparticles was initially developed for enhanced oil recovery(EOR)in low permeability reservoirs.The MCB nanoparticles were obtained via a three-step reaction involving modification by oxidation,acyl chlorination,and activated grafting.MCB nano-particles were spherically dispersed,with an average size of 72.3 nm.Compared with carbon black(CB)nanoparticles,dispersed MCB nanoparticles can effectively reduce the oil-water interfacial tension(IFT)to 10^(-2)mN/m and change the surface wettability of sand particles.Based on the results of core flooding experiments,the MCB nanoparticles exhibited a better EOR capacity than surfactants and CB nano-particles,and the final oil recovery was significantly increased by 27.27%.The core scanning test showed that the MCB nanoparticles could plug high permeability channels by adsorbing onto the surfaces of sand particles and forming larger aggregates that bridge across pores or throats,resulting in a higher swept volume.The synergistic effects of improved swept volume and oil displacement efficiency were the EOR mechanisms of the MCB nanoparticles.The studies indicate that these MCB nanoparticles have excellent potential for EOR in low permeability reservoirs. 展开更多
关键词 Modified carbon black nanoparticles interfacial tension reduction Displacement efficiency Synergistic effects Enhanced oil recovery
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Evaluation of the coupled impact of silicon oxide nanoparticles and low-salinity water on the wettability alteration of Berea sandstones 被引量:1
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作者 ALOMAIR Osamah AL-DOUSARI Mabkhout +1 位作者 AZUBUIKE CNyeso GARROUCH Ali 《Petroleum Exploration and Development》 SCIE 2023年第4期934-943,共10页
This study investigated experimentally the coupled effects of hydrophilic SiO_(2) nanoparticles(NPs)and low-salinity water(LSW)on the wettability of synthetic clay-free Berea sandstone.Capillary pressure,interfacial t... This study investigated experimentally the coupled effects of hydrophilic SiO_(2) nanoparticles(NPs)and low-salinity water(LSW)on the wettability of synthetic clay-free Berea sandstone.Capillary pressure,interfacial tension(IFT),contact angle,Zeta potential,and dynamic displacement measurements were performed at various NP mass fractions and brine salinities.The U.S.Bureau of Mines(USBM)index was used to quantify the wettability alteration.Furthermore,the NP stability and retention and the effect of enhanced oil recovery by nanofluid were examined.The results showed that LSW immiscible displacement with NPs altered the wettability toward more water wet.With the decreasing brine salinity and increasing NP mass fraction,the IFT and contact angle decreased.The wettability alteration intensified most as the brine salinity decreased to 4000 mg/L and the NP mass fraction increased to 0.075%.Under these conditions,the resulting incremental oil recovery factor was approximately 13 percentage points.When the brine salinity was 4000 mg/L and the NP mass fraction was 0.025%,the retention of NPs caused the minimum damage to permeability. 展开更多
关键词 NANOPARTICLE low-salinity water wettability alteration interfacial tension contact angle USBM index
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表面活性剂对水驱普通稠油油藏的乳化驱油机理 被引量:2
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作者 孙宝泉 吴光焕 +2 位作者 赵红雨 吴伟 孙超 《油田化学》 CAS CSCD 北大核心 2024年第1期138-145,共8页
为了研究乳化降黏驱油剂对不同渗透率的水驱普通稠油油藏的驱油效率和孔隙尺度增效机理,选取了烷基酚聚氧乙烯醚(J1)、α-烯基磺酸盐类表面活性剂(J2)、十二烷基羟磺基甜菜碱(J3)、J3与烷基酚聚氧乙烯醚羧酸盐复配表面活性剂(J4)作为驱... 为了研究乳化降黏驱油剂对不同渗透率的水驱普通稠油油藏的驱油效率和孔隙尺度增效机理,选取了烷基酚聚氧乙烯醚(J1)、α-烯基磺酸盐类表面活性剂(J2)、十二烷基羟磺基甜菜碱(J3)、J3与烷基酚聚氧乙烯醚羧酸盐复配表面活性剂(J4)作为驱油剂,开展了4种驱油剂一维驱油和微观驱油模拟实验,明确了乳化降黏驱油剂在孔隙尺度的致效机理。结果表明,降低界面张力对提高驱油效率的作用大于提高乳化降黏率。在油藏条件下,乳化降黏驱油剂需要依靠乳化降黏和降低界面张力的协同增效作用,才能大幅提高驱油效率。乳化降黏驱油剂的乳化能力越强、油水界面张力越低,驱油效率增幅越大。当化学剂乳化降黏率达到95%时,油水界面张力从10^(-1)mN/m每降低1个数量级,化学剂在高渗透和低渗透岩心中的驱油效率依次提高约10.0%和7.8%。乳化降黏驱油剂注入初期通过降低界面张力,使得高渗透岩心和低渗透岩心中的驱替压力分别为水驱注入压力的1/2和1/3,从而提高注入能力。注入后期大块的原油被乳化形成大量不同尺寸的油滴,增强原油流动性,提高驱油效率。乳化形成的界面相对稳定的稠油油滴,能暂堵岩石的喉道和大块稠油与岩石颗粒形成的通道。油滴的暂堵叠加效应,使高渗透和低渗透岩心的驱替压差分别为水驱压差的5.2倍和32.3倍,大幅提高了注入压力,从而扩大平面波及面积。降黏驱油剂驱油实现了提高驱油效率的同时扩大波及范围。研究结果为水驱稠油开发用驱油剂的研发提供参考,为大幅提高水驱普通稠油采收率奠定基础。 展开更多
关键词 普通稠油 驱油剂 水驱 乳化 降黏 界面张力 致效机理
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Oil recovery tests with ionic liquids: A review and evaluation of 1-decyl-3-methylimidazolium triflate
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作者 Alba Somoza Alberto Arce Ana Soto 《Petroleum Science》 SCIE CAS CSCD 2022年第4期1877-1887,共11页
The main advantages of the use of ionic liquids in enhanced oil recovery are their tunability and stability in harsh environmental conditions. In this work, a comprehensive review of ionic liquids proposed to improve ... The main advantages of the use of ionic liquids in enhanced oil recovery are their tunability and stability in harsh environmental conditions. In this work, a comprehensive review of ionic liquids proposed to improve current chemical oil recovery methods has been presented, focusing on core flooding experiments. With an almost infinite number of possible ionic liquids, the amount of experiments carried out up to now has been very limited. However, results are promising, with additional recovery after secondary flooding of up to 32% of the original oil in place. Most formulations with ionic liquids have been proposed for sandstone reservoirs, the number of studies with carbonate cores being very scarce. The possibilities of a new room temperature surface active ionic liquid, 1-decyl-3-methylimidazolium triflate,for this application were analyzed. It was shown that it is able to drastically reduce the water/oil interfacial tension. An optimized formulation was proposed for carbonate reservoirs. After secondary flooding with brine, an additional recovery of 10.5% of original oil in place was achieved at room conditions. A combination of the proposed method followed by a polymer flooding step with polyacrylamide led to a lesser but still significant recovery, reducing the costs associated to the ionic liquid. 展开更多
关键词 Enhanced oil recovery(EOR) Ionic liquids Core flooding interfacial tension 1-Decyl-3-methylimidazolium triflate
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扶余致密油藏CO_(2)吞吐参数优化设计 被引量:2
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作者 姚同玉 孙灵辉 崔传智 《特种油气藏》 CAS CSCD 北大核心 2024年第3期123-128,共6页
为解决致密油开采初期产量递减快、采收率低的问题,结合扶余致密油藏岩石和流体性质,采用数值模拟方法,研究了注入时机、注入压力对CO_(2)吞吐采油效果的影响,优化工程参数,分析了致密油CO_(2)吞吐过程中的油藏压力分布特征、界面张力... 为解决致密油开采初期产量递减快、采收率低的问题,结合扶余致密油藏岩石和流体性质,采用数值模拟方法,研究了注入时机、注入压力对CO_(2)吞吐采油效果的影响,优化工程参数,分析了致密油CO_(2)吞吐过程中的油藏压力分布特征、界面张力分布特征以及致密油CO_(2)吞吐开发的可行性。研究表明:油层压力系数降至0.65左右时开展CO_(2)吞吐,CO_(2)可与原油充分接触,有利于发挥CO_(2)原油溶解作用,提高开采效果;注入压力接近最小混相压力时,CO_(2)以游离相进入基质,更易进入基质深处,与致密油充分接触,并在原油中溶解混相,改善开发效果。溶解平衡后,CO_(2)与致密油界面张力随时间快速增加,以此确定闷井时间。研究确定了CO_(2)吞吐采油最佳工程参数,即注入量为8000 t,注入速度为120 t/d,注入压力为27 MPa,闷井时间为30 d,计算该方案下增油量为3084 t,换油率为0.39。水平井现场试验也证明CO_(2)吞吐技术应用于扶余致密油藏,采收率提高了1.38~3.33个百分点。研究结果对拓展致密油藏CO_(2)吞吐开采技术的应用具有重要意义。 展开更多
关键词 致密油 CO_(2)吞吐 参数优化 压力分布 界面张力 扶余油藏
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驱油流体吸附抑制剂的合成与评价 被引量:1
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作者 赵帅 田雨 +3 位作者 吴澳回 安锋涛 杨林 师永民 《石油与天然气化工》 CAS CSCD 北大核心 2024年第1期98-103,共6页
目的在化学驱的实施过程中,地层对驱油剂的吸附滞留是表面活性剂进入地层后含量损失的一种主要原因,为了减少驱油流体在地层的损耗成本而展开对驱油液体吸附抑制剂的研究。方法以二氰二胺(DCD)、1-十八胺盐酸盐(OHC)为原料,基于亲核加... 目的在化学驱的实施过程中,地层对驱油剂的吸附滞留是表面活性剂进入地层后含量损失的一种主要原因,为了减少驱油流体在地层的损耗成本而展开对驱油液体吸附抑制剂的研究。方法以二氰二胺(DCD)、1-十八胺盐酸盐(OHC)为原料,基于亲核加成的原理采用熔融法在150℃下合成了一种针对驱油流体的吸附抑制剂OHCB,该表面活性剂同时具备强疏水基、强极性原子和阳离子基团,因此具有较强的占据黏土矿物表面吸附位点的能力。对其进行了红外吸收、紫外吸收、元素分析、质谱等结构表征,采用静态吸附法研究了其作为添加剂的最佳配比,并验证在最佳配比下对驱油剂AEO7的吸附抑制效果,以及该体系相较AEO7单一体系的静态洗油效率、乳化性及润湿性的变化。结果OHCB抑制驱油剂AEO7在黏土矿物表面的吸附效果较好,在驱油剂与吸附抑制剂质量比为5∶1的情况下,抑制效果可达27%以上。结论OHCB不仅具有较好的吸附抑制效果,且其加入使AEO7的静态洗油效率提升至27.3%、γc m c降至27.1 mV/m,CMC降至38 mg/L、油-水界面张力降至0.5 mV/m以下,对体系性能起到了协同增效的作用,并且相较于需要预吸附的牺牲剂,其使用更为便捷。 展开更多
关键词 吸附抑制 驱油 静态洗油效率 表面张力 界面张力
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页岩油-CO_(2)、CH_(4)、N_(2)混合物界面性质的分子动力学模拟研究 被引量:2
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作者 周宇 孙乾 +4 位作者 张娜 刘伟 郭凌空 唐志淏 付铄然 《油气地质与采收率》 CAS CSCD 北大核心 2024年第6期109-117,共9页
油气界面张力是气驱提高采收率过程中分析油气两相混合程度、影响油气最小混相压力和注气开发效果的重要参数。针对页岩油的主要成分正辛烷(C8),通过分子动力学模拟方法研究了纯CO_(2)和混合气体(CO_(2)、CH_(4)、N_(2))与C8的界面张力... 油气界面张力是气驱提高采收率过程中分析油气两相混合程度、影响油气最小混相压力和注气开发效果的重要参数。针对页岩油的主要成分正辛烷(C8),通过分子动力学模拟方法研究了纯CO_(2)和混合气体(CO_(2)、CH_(4)、N_(2))与C8的界面张力及界面微观特征变化规律,并考虑了温度、压力和气体组分等外界因素对界面特征的影响。结果表明,随着气相压力的增大,气体与C8混合程度增大,界面厚度、粗糙度、相对吸附量等微观特征增强,导致油气界面张力逐渐减小。界面张力随温度在不同压力区间表现出相反的变化趋势:在低压时温度越高,界面张力越小;在高压时温度越高,界面张力反而越大。相较于纯CO_(2)、CH_(4)和N_(2)的加入会增大混合气体与油相的界面张力,其中N_(2)对油气界面张力的影响更大;同时CH_(4)和N_(2)会使得油气界面厚度、相对吸附量等微观特征减弱。在三元CO_(2)+CH_(4)+N_(2)/C8体系中,CO_(2)的相对吸附量最大,CH_(4)次之,N_(2)最小,证明了3种气体与油的相互作用由强到弱为CO_(2)>CH_(4)>N_(2)。此外,所有体系相对吸附量均大于0,吸附量越大,界面张力随压力的增大下降得越快,这与吉布斯吸附理论相一致。 展开更多
关键词 油气界面张力 分子动力学 微观特征 界面厚度 相对吸附量
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纳米流体提高采收率机理研究现状 被引量:2
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作者 郝龙 侯吉瑞 +2 位作者 梁拓 闻宇晨 屈鸣 《特种油气藏》 CAS CSCD 北大核心 2024年第3期1-10,共10页
与传统的表面活性剂和聚合物溶液相比,纳米流体驱油是一项新的提高采收率技术,但目前机理研究成果较为分散,缺少系统性。因此,结合国内外纳米流体研究情况,总结纳米流体主要提高采收率机理,指出了纳米流体目前所面临的研究难点,展望了... 与传统的表面活性剂和聚合物溶液相比,纳米流体驱油是一项新的提高采收率技术,但目前机理研究成果较为分散,缺少系统性。因此,结合国内外纳米流体研究情况,总结纳米流体主要提高采收率机理,指出了纳米流体目前所面临的研究难点,展望了纳米材料在今后的攻关方向。研究表明:纳米流体提高采收率机理包括降低油水界面张力,在油水固三相区形成楔形膜,产生结构分离压力,改善流度比扩大波及体积,改变岩石润湿性,增强泡沫稳定性,降低注入压力和选择性调堵孔道;今后可从提高纳米流体稳定性、降低纳米流体成本、提高采收率机理协同性研究以及开发高效纳米驱油体系等方面进行深入探索。该研究为大规模推广纳米流体在提高采收率方面的应用提供了理论基础和实验依据。 展开更多
关键词 纳米流体 提高采收率 界面张力 结构分离压力 润湿性
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