References
- M. Kostoglou, J. Lioumbas, T. Karapantsios, A population balance
treatment of bubble size evolution in free draining foams,
Colloids Surfaces A, 473 (2015) 75–84.
- S.A. Koehler, S. Hilgenfeldt, H.A. Stone, A generalized view of
foam drainage: experiment and theory, Langmuir, 16 (2000)
6327–6341.
- R. Zheng, Z. Ren, H. Gao, Y. Qian, Flotation behavior of different
colored fluorites using sodium oleate as a collector, Minerals,
7 (2017) 159.
- P.B. Kowalczuk, J. Drzymala, Selectivity and power of frothers
in copper ore flotation, Physicochem. Probl. Mi., 53 (2017)
515–523.
- B. Ramaswamy, D.D. Kar, S. De, A study on recovery of oil
from sludge containing oil using froth flotation, J. Environ.
Manage., 85 (2007) 150–154.
- R.K. Prud’Homme, S.A. Khan, Foams: Theory, Measurements,
and Applications, Marcel Dekker, New York, USA, 1996.
- L.L. Schramm, Surfactants fundamentals and applications in
the petroleum industry, Cambridge University Press, Calgary,
Canada, 2000.
- G. Bournival, Z. Du, S. Ata, G.J. Jameson, Foaming and gas
dispersion properties of non-ionic frothers in the presence
of hydrophobized submicron particles, Chem. Eng. Sci., 116
(2014) 536–546.
- H. Fruhner, K.D. Wantke, K. Lunkenheimer, Relationship
between surface dilational properties and foam stability, Colloids
Surfaces A, 162 (2000) 193–202.
- S. Chen, Y. Zhou, G. Wang, W. Li, Y. Zhu, J. Zhang, Influence
of foam apparent viscosity and viscoelasticity of liquid
films on foam stability, J. Disper. Sci. Technol., 37 (2016)
479–485.
- N. Yekeen, A.K. Idris, M.A. Manan, A.M. Samin, Experimental
study of the influence of silica nanoparticles on the bulk stability
of SDS–foam in the presence of oil, J. Disper. Sci. Technol.,
38 (2017) 416–424.
- E. Carey, C. Stubenrauch, Free drainage of aqueous foams
stabilized by mixtures of a non–ionic (C12DPMO) and an ionic
(C12TAB) surfactant, Colloid Surface A, 419 (2013) 7–14.
- A.K. Gupta, P.K. Banerjee, A. Mishra, P. Satish, Pradip, Effect
of alcohol and polyglycol ether frothers on foam stability,
bubble size and coal flotation, Int. J. Miner. Process., 82 (2007)
126–137.
- J.S. Lioumbas, E. Georgiou, M. Kostoglou, T.D. Karapantsios,
Foam free drainage and bubbles size for surfactant
concentrations below the CMC, Colloid Surface A, 487 (2015)
92–103.
- J. Wang, G. Li, S. Li, Y. Wang, Y. Xing, Z. Ma, Y. Cao, Investigation
on properties of aqueous foams stabilized by aliphatic
alcohols and polypropylene glycol, J. Disper. Sci. Technol.,
DOI: 10.1080/01932691.2018.1479268.
- R. Farajzadeh, R.M. Muruganathan, W.R. Rossen, R. Krastev,
Effect of gas type on foam film permeability and its implications
for foam flow in porous media, Adv. Colloid Interf., 168
(2011) 71–78.
- R. Farajzadeh, R. Krastev, P.L. Zitha, Gas permeability of foam
films stabilized by an alpha-olefin sulfonate surfactant, Langmuir,
25 (2009) 2881–2886.
- P.A. Harvey, A.V. Nguyen, G.J. Jameson, G.M. Evans, Influence
of sodium dodecyl sulphate and dowfroth frothers on froth
stability, Miner. Eng., 18 (2005) 311–315.
- E. Carey, C. Stubenrauch, Properties of aqueous foams stabilized
by dodecyl- trimethylammonium bromide, J. Colloid
Interf. Sci., 333 (2009) 619–627.
- S. Hilgenfeldt, S.A. Koehler, H.A. Stone, Dynamics of coarsening
foams: accelerated and self–limiting drainage, Phys. Rev.
Lett., 86 (2001) 4704–4707.
- M.U. Vera, D.J. Durian, Enhanced drainage and coarsening in
aqueous foams, Phys. Rev. Lett., 88 (2002) 088301–088304.
- S.A. Koehler, H.A. Stone, M.P. Brenner, J. Eggers, Dynamics of
foam drainage, Phys. Rev. E., 58 (1998) 2097–2106.
- D. Weaire, S. Hutzler, The physics of foams, Oxford University
Press, Oxford, 2001.
- A. Bhakta, E. Ruckestein, Drainage and collapse in standing
foams, in: S. Hartland (Ed.), Surface and Inter facial Tension:
Measurement, Theory and Applications, Marcel Dekker, New
York, 2004.
- G. Narsimhan, E. Ruckenstein, Structure, Drainage and
Coalescence of Foams and Concentrated Emulsions, in: R.K.
Prudhomme, S.A. Khan (Eds.), Foams: Theory, Measurements
and Applications, Marcel Dekker, New York, 1995.
- A.V. Nguyen, H.J. Schulze, Colloidal Science of Flotation, Marcel
Dekker, New York, 2004.
- M.J. Rosen, J.T. Kunjappu, Surfactants and Inter facial Phenomena,
4th ed., Wiley, New York, USA., 2012.
- E. Carey, C. Stubenrauch, Foaming properties of mixtures of a
non-ionic (C12DMPO) and an ionic surfactant (C12TAB), J. Colloid
Interf. Sci., 346 (2010) 414–423.
- J. Boos, W. Drenckhan, C. Stubenrauch, Protocol for studying
aqueous foams stabilized by surfactant mixtures, J. Surfactants
Deterg., 16 (2013) 1–12.
- R.J. Pugh, Foaming, foam films, antifoaming and defoaming,
Adv. Colloid Interfac., 64 (1996) 67–142.
- D. Weaire, S. Hutzler, The physics of foams, Clarendon Press,
Oxford, 1999.
- H. Wang, W. Guo, C. Zheng, D. Wang, H. Zhan, Effect of
temperature on foaming ability and foam stability of typical
surfactants used for foaming agent, J. Surfactants Deterg., 20
(2017) 1–8.
- M.K. Sharma, D.O. Shah, W.E. Brigham, The influence of temperature
on surface and microscopic properties of surfactant
solutions in relation to fluid displacement efficiency in porous
media, AIChE J., 31 (1985) 222–228.