研究了疏水基含量和微嵌段长度对缔合聚合物,聚(丙烯酰胺-丙烯酸钠-十六烷基二甲基烯丙基氯化铵)[P(AM-NaAA-C16DMAAC)],弹性行为的影响规律.研究结果表明,对于结构类似且具有相近零剪切粘度的缔合聚合物,疏水基含量越高,聚合物分子链间形成稠密网络结构的疏水缔合能力越强,其第一法向应力差N1越大,N1出现拐点处对应剪切速率越小,缔合聚合物溶液弹性越好;并且缔合聚合物溶液的弹性随着疏水微嵌段长度的增加先增加后降低,存在最佳微嵌段长度.因此,可以通过调整分子结构有效改变缔合聚合物溶液的弹性行为.
参考文献
[1] | LeMeins J F,Tassin J F.Shear-induced Phase Separation in an Associating Polymer Solution[J].Macromolecules,2001,34(8):2641-2647. |
[2] | CAO Baoge,DAI Qian,CHEN Dingzhao,et al.Study on Shear Resistance Mechanism of Hydrophobically Associating Polymer[J].Drill Prod Technol,2007,30 (3):121-124 (in Chinese).曹宝格,戴茜,陈定朝,等.疏水缔合聚合物溶液的抗剪切机理研究[J].钻采工艺,2007,30(3):121-124. |
[3] | Vittadello S T,Biggs S.Shear History Effects in Associative Thickener Solutions[J].Macromolecules,1998,31(22):7691-7697. |
[4] | CAO Baoge,LUO Pingya,ZHAO Yonggang.Experiment Study on Viscoelasticity of Associative Polymer Solutions[J].Southwest Petrol Univ,2007,29(4):118-121 (in Chinese).曹宝格,罗平亚,赵永刚.缔合聚合物溶液的粘弹性实验研究[J].西南石油大学学报,2007,29(4):118-121. |
[5] | Urbissinova T,Trivedi J,Kuru E.Effect of Elasticity During Viscoelastic Polymer Flooding:A Possible Mechanism of Increasing the Sweep Efficiency[J].J Can Petrol Technol,2010,49(12):49-56. |
[6] | Kim D H,Lee S,Ahn C H,et al.Development of a Viscoelastic Property Database for EOR Polymers[J].SPE-129971,2010. |
[7] | Morvan M,Moreau P,Degre G,et al.New Viscoelastic Fluid for Chemical EOR[J].SPE-121675,2009. |
[8] | Delshad M,Kim D,Magbagbeola O,et al.Mechanistic Interpretation and Utilization of Viscoelastic Behavior of Polymer Solutions for Improved Polymer-flood Efficiency[J].SPE-113620,2008. |
[9] | LI Penghua,LI Zhaomin.Analysis on Mechanism of Viscous-elastic Polymer Displacing of Remaining Oil[J].J Oil Gas Technol,2008,30 (05 X):332-334 (in Chinese).李鹏华,李兆敏.粘弹性聚合物驱替剩余油机理分析[J].石油天然气学报,2008,30(05X):332-334. |
[10] | XIA Huifen,WANG Demin,LIU Zhongchun,et al.Study on the Mechanism of Polymer Solution with Visco-elastic Behavior Increasing Microscopic Oil Displacement Efficiency[J].Acta Petrol Sin,2001,22 (4):60-65 (in Chinese).夏惠芬,王德民,刘中春,等.粘弹性聚合物溶液提高微观驱油效率的机理研究[J].石油学报,2001,22(4):60-65. |
[11] | LIANG Jizhao.The Relationship of First Normal-stress Difference and Pressure Drop in Polymer Melt Being Squeezed[J].Plast Process Appl,1994,(002):5-7 (in Chinese).梁基照.聚合物熔体挤出中第一法向应力差与出口压力降的关系[J].塑料加工应用,1994,(002):5-7. |
[12] | LIU Yang,LIU Chunze.Mechanism of Enhancing Oil Displacement Efficiency by Viscoelastic Polymer Solution[J].China Univ Petrol(Nat Sci,Ed),2007,31 (2):91-94 (in Chinese).刘洋,刘春泽.粘弹性聚合物溶液提高驱油效率机理研究[J].中国石油大学学报(自然科学版),2007,31(2):91-94. |
[13] | XUE Xinsheng,GUO Yongjun,NIU Shuanghui,et al.Research on Viscoelasticity Property of Hydrophobically Associating Polymer[J].Drill Fluid Complet Fluid,2005,22(3):50-52(in Chinese).薛新生,郭拥军,牛双会,等.疏水缔合聚合物粘弹性研究[J].钻井液与完井液,2005,22(3):50-52. |
[14] | LIU Jianxin,GUO Yongjun,ZHU Yangwen,et al.Polymerization of Micro-Block Associative Polymer with Alcohol-Surfmer Mixed Micellar Method and Their Rheological Properties[J].Acta Phys-Chim Sin,2012,28(7):1757-1763(in Chinese).柳建新,郭拥军,祝仰文,等.醇-可聚合表面活性剂混合胶束法合成微嵌段缔合聚合物及其流变性[J].物理化学学报,2012,28 (7):1757-1763. |
[15] | Li J,Ma G,Sheng J.Rheological Characterization of in situ Compatibilized Binary Polymer Blends with Variable Steady Shear Viscosities of Components[J].Macromol Sci,Part B,2009,48(5):979-1000. |
[16] | Cheng J J,Polak M A,Penlidis A.Polymer Network Mobility and Environmental Stress Cracking Resistance of High Density Polyethylene[J].Polym-Plast Technol Eng,2009,48(12):1252-1261. |
[17] | CHEN Lijun,CHEN Huabing,SHI Dean,et al.Determination of the Zero Shear Viscosity of Polymer Melts by Steady Rotating Shear Method[J].Colloid Polym,2009,27(2):20-22(in Chinese).陈利军,陈华兵,施德安,等.用旋转剪切法测量聚合物熔体零切粘度时应注意的几个问题[J].胶体与聚合物,2009,27(2):20-22. |
[18] | ZHOU Hui,HUANG Ronghua.Studies on the Solution Properties of Water Soluble Hydrophobically Associating Acrylamide/n-Octylacrylate Copolymers[J].Oilfiled Chem,1997,14 (003):252-256 (in Chinese).周晖,黄荣华.疏水缔合水溶性丙烯酰胺-丙烯酸正辛酯共聚物的溶液性能[J].油田化学,1997,14(003):252-256. |
[19] | Olpert E,Selb J,Candau F.Influence of the Hydrophobe Structure on Composition,Microstructure,and Rheology in Associating Polyacrylamides Prepared by Micellar Copolymerization[J].Macromolecules,1996,29 (5):1452-1463. |
[20] | Yuan R X,Milton J.Surface Concentrations and Molecular Interactions in Binary Mixtures of Surfactants[J].Colloid Interface Sci,1982,86(1):164-172. |
[21] | LacíkI,Selb J,Candau F.Compositional Heterogeneity Effects in Hydrophobically Associating Water-soluble Polymers Prepared by Micellar Copolymerization[J].Polymer,1995,36(16):3197-3211. |
[22] | Candau F,Selb J.Hydrophobically-modified Polyacrylamides Prepared by Micellar Polymerization[J].Adv Colloid Interface Sci,1999,79 (2):149-172. |
[23] | Hill A,Candau F,Selb J.Properties of Hydrophobically Associating Polyacrylamides:Influence of the Method of Synthesis[J].Macromolecules,1993,26(17):4521-4532. |
[24] | Kujawa P,Audibert-Hayet A,Selb J,et al.Rheological Properties of Multisticker Associative Polyelectrolytes in Semidilute Aqueous Solutions[J].Polym Sci Part B:Polym Phys,2004,42 (9):1640-1655. |
[25] | GENG Tongmou,WU Wenhui.Synthesis and Properties of Twin-tailed Hydrophobic Associated Acrylamide/Sodium Acrylate/Dioctylacrylamide Terpolymers[J].Chinese J Appl Chem,2005,22(10):1112-1116(in Chinese).耿同谋,吴文辉.孪尾疏水缔合丙烯酰胺/丙烯酸钠/N,N-二辛基丙烯酰胺共聚物的合成与性能[J].应用化学,2005,22(10):1112-1116. |
[26] | GENG Tongmou,YU Peizhi,WU Wenhui.Study on Preparation Conditions of Twin-tailed Hydrophobically Associating Water-soluble Terpolymers Poly (acrylamide/sodium Acrylate/N,N-dihexyl Acrylamide)[J].Mod Chem Ind,2004,24 (1):105-108,112 (in Chinese).耿同谋,于培志,吴文辉.孪尾疏水缔合丙烯酰胺/丙烯酸钠/N,N-二己基丙烯酰胺共聚物制备条件的研究[J].现代化工,2004,24(1):105-108,112. |
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