494
Views
25
CrossRef citations to date
0
Altmetric
Original Articles

Drainage of aqueous film-forming foam stabilized by different foam stabilizers

, , , &
Pages 1266-1273 | Received 15 Jun 2017, Accepted 13 Oct 2017, Published online: 27 Nov 2017

References

  • Prud’homme, R. K.; Khan, S. A. Foams: Theory, Measurements and Applications. Marcel Dekker, Inc., New York, 1996.
  • Wang, D.; Hou, Q.; Luo, Y.; Zhu, Y.; Fan, H. Stability Comparison Between Particles-Stabilized Foams and Polymer-Stabilized Foams. J. Disper. Sci. Technol. 2015, 36, 268–273
  • Yekeen, N.; Idris, A. K.; Manan, M. A.; Samin, A. M. Experimental Study of the Influence of Silica Nanoparticles on the Bulk Stability of SDS-Foam in the Presence of Oil. J. Disper. Sci. Technol. 2017, 38, 416–424.
  • Xu, Y.; Dabros, T.; Hamza, H. Study on the Mechanism of Foaming From Bitumen Froth Treatment Tailings. J. Disper. Sci. Technol. 2007, 28, 413–418.
  • Sheng, Y.; Wu, X.; Lu, S.; Li, C. Experimental Study on Foam Properties of Mixed Systems of Silicone and Hydrocarbon Surfactants. J. Surfactants Deterg. 2016, 19, 823–831.
  • Magrabi, S. A.; Dlugogorski, B. Z.; Jameson, G. J. Free Drainage in Aqueous Foams: Model and Experimental Study. AICHE J. 2001, 47, 314–327.
  • Bikerman, J. J. Foams. Springer Science & Business Media, New York, 2013.
  • Weaire, D.; Hutzler, S.; Verbist, G.; Peters, E. A. J. F. A Review of Foam Drainage. Adv. Chem. Phys. 1997, 102, 315–374.
  • Bhakta, A.; Ruckenstein, E. Decay of Standing Foams: Drainage, Coalescence and Collapse. Adv. Colloid Interface 1997, 70, 1–124.
  • Bhakta, A.; Ruckenstein, E. Drainage and Coalescence in Standing Foams. J. Colloid Interface Sci. 1997, 191, 184–201.
  • Verbist, G.; Weaire, D.; Kraynik, A. M. The Foam Drainage Equation. J. Phys.-Condens. Mat. 1996, 8, 3715.
  • Carey, E.; Stubenrauch, C. Properties of Aqueous Foams Stabilized by Dodecyltrimethylammonium Bromide. J. Colloid Interface Sci. 2009, 333, 619–627.
  • Gauchet, S.; Durand, M.; Langevin, D. Foam drainage: Possible Influence of a Non-Newtonian Surface Shear Viscosity. J. Colloid Interface Sci. 2015, 449, 373–376.
  • Kruglyakov, P. M.; Karakashev, S. I.; Nguyen, A. V.; Vilkova, N. G. Foam Drainage. Curr. Opin. Colloid In. 2008, 13, 163–170.
  • Safouane, M.; Saint-Jalmes, A.; Bergeron, V.; Langevin, D. Viscosity Effects in Foam Drainage: Newtonian and Non-Newtonian Foaming Fluids. Eur. Phys. J. E 2006, 19, 195–202.
  • Rand, P. B.; Kraynik, A. M. Drainage of Aqueous Foams: Generation-Pressure and Cell-Size Effects. Soc. Petrol. Eng. J. 1983, 23, 152–154.
  • Sarma, D. S. H. S. R.; Khilar, K. C. Effects of Initial Gas Volume Fraction on Stability of Aqueous Air Foams. Ind Eng Chem Res. 1988, 27, 892–894.
  • Narsimhan, G.; Ruckenstein, E. Structure, Drainage, and Coalescence of Foams and Concentrated Emulsions. Surfactant Sci. Ser. 1996, 99–188.
  • Princen, H. M. Gravitational Syneresis in Foams and Concentrated Emulsions. J. Colloid Interface Sci. 1990, 134, 188–197.
  • Saint-Jalmes, A.; Vera, M. U.; Durian, D. J. Uniform Foam Production by Turbulent Mixing: New Results on Free Drainage Vs. Liquid content. Eur. Phys. J. B. 1999, 12, 67–73.
  • Tamura, T.; Takeuchi, Y.; Kaneko, Y. Influence of Surfactant Structure on the Drainage of Nonionic Surfactant Foam Films. J. Colloid Interface Sci. 1998, 206, 112–121.
  • Magrabi, S. A.; Dlugogorski, B. Z. A Comparative Study of Drainage Characteristics in AFFF and FFFP Compressed-Air Fire-Fighting Foams. Fire Safety. J. 2002, 37, 21–52.
  • Lattimer, B. Y.; Hanauska, C. P.; Scheffey, J. L.; Williams, F. W. The Use of Small-Scale Test Data to Characterize Some Aspects of Fire Fighting Foam for Suppression Modeling. Fire safety. J. 2003, 38, 117–146.
  • Blomqvist, B. R.; Wilde, P.; Claesson, P. M. Competitive Destabilization/Stabilization of β‐Lactoglobulin Foam by PEO‐PPO‐PEO Polymeric Surfactants. J. Disper. Sci. Technol. 2006, 27, 527–536.
  • Khristov, K.; Exerowa, D. Foam Stabilizing Properties of Surfactants Determined at Constant and Variable Pressure in the Foam Liquid Phase. J. Disper. Sci. Technol. 1997, 18, 561–575.
  • Petkova, R.; Tcholakova, S.; Denkov, N. D. Foaming and Foam Stability for Mixed Polymer–Surfactant Solutions: Effects of Surfactant Type and Polymer Charge. Langmuir. 2012, 28, 4996–5009.
  • Jian, G.; Hou, Q.; Zhu, Y. Stability of Polymer and Surfactant Mixture Enhanced Foams in the Presence of Oil Under Static and Dynamic Conditions. J Disper Sci Technol. 2015, 36, 477–488.
  • Kristen, N.; Vüllings, A.; Laschewsky, A.; Miller, R.; von Klitzing, R. Foam Films From Oppositely Charged Polyelectolyte/Surfactant Mixtures: Effect of Polyelectrolyte and Surfactant Hydrophobicity on Film Stability. Langmuir 2010, 26, 9321–9327.
  • Maldonado-Valderrama, J.; Martín-Molina, A.; Martín-Rodriguez, A.; Cabrerizo-Vílchez, M. A.; Gálvez-Ruiz, M. J.; Langevin, D. Surface Properties and Foam Stability of Protein/Surfactant Mixtures: Theory and Experiment. J. Phys. Chem. C. 2007, 111, 2715–2723.
  • Regismond, S. T.; Winnik, F. M.; Goddard, E. D. Stabilization of Aqueous Foams by Polymer/Surfactant Systems: Effect of Surfactant Chain Length. Colloid Surf. A. 1998, 141, 165–171.
  • Goodwin, J. Colloids and Interfaces with Surfactants and Polymers; John Wiley & Sons: Hoboken, New Jersey, 2009.
  • Duan, M.; Hu, X.; Ren, D.; Guo, H. Studies on Foam Stability by the Actions of Hydrophobically Modified Polyacrylamides. Colloid Polym. Sci. 2004, 282, 1292–1296.
  • Zhang, H.; Miller, C. A.; Garrett, P. R.; Raney, K. H. LA and Amine Oxide as Foam Stabilizers in the Presence of Hardness and Oily Soil. J. Surfactants. Deterg. 2005, 8, 99–107.
  • Dickinson, E. Food Emulsions and Foams: Stabilization by Particles. Curr. Opin. Colloid In. 2010, 15, 40–49.
  • Yekeen, N.; Idris, A. K.; Manan, M. A.; Samin, A. M. Experimental Study of The Influence Of Silica Nanoparticles on the Bulk Stability of SDS-Foam in the Presence of Oil. J. Disper. Sci. Technol. 2017, 38, 416–424.
  • Stocco, A.; Drenckhan, W.; Rio, E.; Langevin, D.; Binks, B. P. Particle-Stabilised Foams: An Interfacial Study. Soft Matter 2009, 5, 2215–2222.
  • Zhu, Y.; Pei, X.; Jiang, J.; Cui, Z.; Binks, B. P. Responsive Aqueous Foams Stabilized by Silica Nanoparticles Hydrophobized in Situ with A Conventional Surfactant. Langmuir 2015, 31, 12937–12943.
  • Cui, Z. G.; Cui, Y. Z.; Cui, C. F.; Chen, Z.; Binks, B. P. Aqueous Foams Stabilized by in Situ Surface Activation of CaCO3 Nanoparticles Via Adsorption of Anionic Surfactant. Langmuir 2010, 26, 12567–12574.
  • Sheng, Y.; Lu, S.; Xu, M.; Wu, X.; Li, C. Effect of XG on the Performance of Aqueous Film-Forming Foam. J. Disper. Sci. Technol. 2016, 37, 1664–1670.
  • Wilson, A. J. Foams: Physics, Chemistry and Structure; Springer Series in Applied Biology; Springer-Verlag: Berlin Heidelberg GmbH, 1989.
  • Li, F.; Li, G. Z.; Xu, G. Y.; Wang, H. Q.; Wang, M. Studies on the Interactions between Anionic Surfactants and Polyvinylpyrrolidone: Surface Tension Measurement, 13 C NMR and ESR. Colloid Polym. Sci. 1998, 276, 1–10.
  • Folmer, B. M.; Kronberg, B. Effect of Surfactant−Polymer Association on the Stabilities of Foams and Thin Films: Sodium Dodecyl Sulfate and Poly (Vinyl Pyrrolidone). Langmuir 2000, 16, 5987–5992.
  • Petkova, R.; Tcholakova, S.; Denkov, N. D. Foaming and Foam Stability for Mixed Polymer–Surfactant Solutions: Effects of Surfactant Type and Polymer Charge. Langmuir 2012, 28, 4996–5009.
  • Rosen, M. J.; Kunjappu, J. T. Surfactants and Interfacial Phenomena; John Wiley & Sons: Hoboken, New Jersey, 2012.
  • Ross, S.; Haak, R. M. Inhibition of Foaming. IX. Changes in the Rate of Attaining Surface Tension Equilibrium in Solutions of Surface-Active Agents on Addition of Foam Inhibitors and Foam Stabilizers. J. Phys. Chem. 1958, 62, 1260–1264.
  • Palaniraj, A.; Jayaraman, V. Production, Recovery and Applications of XG by Xanthomonas Campestris. J. Food Eng. 2011, 106, 1–12. 545
  • Bhakta, A.; Ruckenstein, E. Modeling of the Generation and Collapse of Aqueous Foams. Langmuir 1996, 12, 3089–3099.
  • Karakashev, S. I.; Nguyen, A. V. Effect of Sodium Dodecyl Sulphate and Dodecanol Mixtures on Foam Film Drainage: Examining Influence of Surface Rheology and Intermolecular Forces. Colloid Surf. A. 2007, 293, 229–240

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.