Welcome to Journal of Beijing Institute of Technology
Volume 23Issue 3
.
Turn off MathJax
Article Contents
MU Rui-hua, WU Wen-hui. Synergistic effect of salts on inducing obvious viscoelastic behavior of cationic trimeric surfactant solutions[J]. JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2014, 23(3): 420-426.
Citation: MU Rui-hua, WU Wen-hui. Synergistic effect of salts on inducing obvious viscoelastic behavior of cationic trimeric surfactant solutions[J].JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2014, 23(3): 420-426.

Synergistic effect of salts on inducing obvious viscoelastic behavior of cationic trimeric surfactant solutions

  • Received Date:2013-02-23
  • A viscoelastic system formed by the solutions of di(2-hydroxyl-dimethylene ether)- α, ω, γ-triple (dimethyloctadecylammonium chlorine) (18-4(OH)-18-4(OH)-18) is proposed to solve the problems of poor temperature and shear resistances of clean fracturing fluid. The apparent viscosity of 18-4(OH)-18-4(OH)-18 solution affected by inorganic salt, hydrotropic salt and their mixtures is investigated using steady state measurements. Meanwhile, the temperature and shear resistances of systems of 18-4(OH)-18-4(OH)-18 and several common single-chain surfactants are compared. The rheological experiments show that, the coexistence of NaSal and NaCl makes it easier for the system to promote micellar growth yielding wormlike micelles than single NaSal or NaCl. The apparent viscosity of 18-4(OH)-18-4(OH)-18 solution maintains over 87.5.mPa·s above 100.℃. The results indicate that there exists a synergistic effect in solutions of 18-4(OH)-18-4(OH)-18 trimeric surfactant with NaSal and NaCl.
  • loading
  • [1]
    Miller M J, Samuel Mathew, Vinod P S, et al. Compositions and methods to control fluid loss in surfactant-based wellbore service fluids: USA, 6605570 B2 [P]. 2003-08-12.
    [2]
    Dahanayake M S, Yang Jiang, Niu J H Y, et al. Viscoelastic surfactant fluids and related methods of use: USA, 6831108 B2 [P]. 2004-12-14.
    [3]
    Melson A F, Steere D C. Method for stimulating hydrocarbon production: USA, 6390191 B1 [P]. 2002-05-21.
    [4]
    Zhou Jian, Hughes Trevor. Aqueous viscoelastic fluid: USA, 7036585 B2 [P]. 2006-05-02.
    [5]
    Samuue M. Viscoelastic surfactant fracturing fluids in low permeability reservoir [J]. Oil and Gas Geology Information Abroad, 2003, 1(1): 104-107. (in Chinese)
    [6]
    Snyder T C, Free D L, McConnell S B, et al. Delayed borate crosslinked fracturing fluid: USA, 6060436 [P]. 2000-05-09.
    [7]
    Rojas M R, Müller A J, Sáez A E. Effect of ionic environment on the rheology of wormlike micelle solutions of mixtures of surfactants with opposite charge [J]. Journal of Colloid and Interface Science, 2010, 342: 103-109.
    [8]
    Yu Defeng, Huang Xu, Wang Yilin, et al. Effects of inorganic and organic salts on aggregation behavior of cationic gemini surfactants [J]. The Journal of Physical Chemistry B, 2010, 114 (46): 14955-14964.
    [9]
    Tanaka Fumihiko. Transient network theory of wormlike micelles: topological force accelerates Relaxation [J]. Langmuir, 2010, 26(8): 5374-5381.
    [10]
    Rakitin A R, Pack G R. Necessity of aromatic carboxylate anions to be planar to induce growth of cationic micelles [J]. Langmuir, 2005, 21(3): 837-840.
    [11]
    Myers D. Surfaces, Interfaces and Colloids: Principles and Applications[M]. Wu Dacheng, Zhu Puxin. Beijing: Chemical Industry Press, 2005:206-207. (in Chinese)
    [12]
    Khan I A, Khanam A J, Khan Z A, et al. Mixing behavior of anionic hydrotropes with cationic gemini surfactants [J]. Journal of Chemical & Engineering Data, 2010, 55(11):4775-4779.
    [13]
    Ge Wu, Shi Haifeng, Talmon Yeshayahu, et al. Synergistic effects of mixed aromatic counterions on nanostructures and drag reducing effectiveness of aqueous cationic surfactant solutions[J]. The Journal of Physical Chemistry B, 2011, 115: 5939-5946.
    [14]
    Steed J W, Atwood J L. Supramolecular Chemistry [M]. Beijing: Chemical Industry Press, 2006:15-22.
    [15]
    Peter F, Heinz R. Rheological master curves of viscoelastic surfactant solutions by varying the solvent viscosity and temperature [J]. Langmuir, 1997, 13(26): 7012-7020.
    [16]
    Raghavan S R, Kaler E W. Highly viscoelastic wormlike micellar solutions formed by cationic surfactants with long unsaturated tails [J]. Langmuir, 2001, 17(2): 300-306.
    [17]
    Rose G D, Teot A S. In Structure and Flow in Surfactant Solution[M]. Washington, DC: American Chemical Society, 1994:352-369.
  • 加载中

Catalog

    通讯作者:陈斌, bchen63@163.com
    • 1.

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (1047) PDF downloads(475) Cited by()
    Proportional views
    Related

    /

      Return
      Return
        Baidu
        map