Comparison of drag reduction, rheology, microstructure and stress-induced precipitation of dilute cationic surfactant solutions with odd and even alkyl chains

被引:0
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作者
Zhiqing Lin
Anthony Mateo
Yi Zheng
Ellina Kesselman
Eric Pancallo
David J. Hart
Yeshayahu Talmon
Ted H. Davis
L. Scriven
Jacques L. Zakin
机构
[1] Department of Chemical Engineering,
[2] The Ohio State University,undefined
[3] Columbus,undefined
[4] OH 43210,undefined
[5] USA,undefined
[6] Department of Chemical Engineering and Materials Science,undefined
[7] University of Minnesota,undefined
[8] Minneapolis,undefined
[9] MN 55455,undefined
[10] USA,undefined
[11] Department of Food Engineering and Biotechnology,undefined
[12] Technion-Israel Institute of Technology,undefined
[13] Haifa,undefined
[14] 32000,undefined
[15] Israel,undefined
[16] Department of Chemical Engineering,undefined
[17] Technion-Israel Institute of Technology,undefined
[18] Haifa,undefined
[19] 32000,undefined
[20] Israel,undefined
[21] Department of Chemistry,undefined
[22] The Ohio State University,undefined
[23] OH 43210,undefined
来源
Rheologica Acta | 2002年 / 41卷
关键词
Odd and even numbered cationic surfactant Drag reduction Micelles Rheology Stress-induced precipitation Cryo-TEM Light microscopy;
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摘要
Cationic surfactant systems of different alkyl chain lengths with counterion, CnTAC(5 mmol/l)/3-Cl-Benzoate(12.5 mmol/l) (n=15, 16, 17, 18), were investigated for drag reduction, rheological behaviors, microstructure, and stress-induced precipitation. These are the first measurements of these characteristics for odd chain length (C15 and C17) quaternary ammonium surfactants. The lower and upper effective drag reduction temperature limits, viscoelasticity, and stress-induced precipitation temperature increased with alkyl chain length. Krafft temperature, critical turbidity temperature, and lower drag reduction effectiveness temperature limit showed a zigzag odd-even effect, while the stress-induced precipitation temperature did not. Light microscopy and cryo-TEM showed that cooling the C15 solution below 20 °C produced crystals, while above that temperature threadlike micelles were present. The same was true for the solutions of C18 that had threadlike micellar network microstructures when clear and crystals formed upon cooling. Micellar solutions can remain in a homogenous metastable state at a temperature below the Krafft temperature and above the critical turbidity temperature for days without external disturbance. Imposition of flow stress causes the systems to overcome the energy barrier and precipitate.
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页码:483 / 492
页数:9
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共 2 条
  • [1] Comparison of drag reduction, rheology, microstructure and stress-induced precipitation of dilute cationic surfactant solutions with odd and even alkyl chains
    Lin, ZQ
    Mateo, A
    Zheng, Y
    Kesselman, E
    Pancallo, E
    Hart, DJ
    Talmon, Y
    Davis, HT
    Scriven, LE
    Zakin, JL
    RHEOLOGICA ACTA, 2002, 41 (06) : 483 - 492
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