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W. Richard Bowen and Nidal Hilal 4

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104 3. QUANTIFICATION OF PARTICLE–BUBBLE INTERACTIONs<br />

[27] G.T. Barnes, I.R. Gentle, Interfacial Science, first ed., Oxford University Press, Oxford,<br />

2005.<br />

[28] R. Aveyard, J.H. Clint, Particle wettability <strong>and</strong> line tension, J. Chem. Soc. Farad. Trans.<br />

92 (1) (1996) 85–89.<br />

[29] L. Dong, D.T. Johnson, Adsorption of acicular particles at the liquid–fluid interfaces<br />

<strong>and</strong> the influence of line tension, Langmuir 21 (2005) 3838–3849.<br />

[30] E.L. Decker, Contact line structure <strong>and</strong> dynamics on surfaces with contact angle hysteresis,<br />

Langmuir 13 (1997) 6321–6332.<br />

[31] L.W. Schwartz, S. Garoff, Contact angle hysteresis on heterogeneous surfaces,<br />

Langmuir 1 (1985) 219–230.<br />

[32] J.-H. Wang, P.M. Claesson, J.L. Parker, H. Yasuda, Dynamic contact angles <strong>and</strong> contact<br />

angle hysteresis of plasma polymers, Langmuir 10 (1994) 3887–3897.<br />

[33] S.B.G. O’Brien, The meniscus near a small sphere <strong>and</strong> its relationship to line pinning<br />

of contact lines, J. Colloid Interface Sci. 183 (1996) 51–56.<br />

[34] B. Müller, M. Riedel, R. Michel, S.M. De Paul, R. Hofer, D. Heger, D. Grützmacher,<br />

Impact of nanoneter-scale roughness on contact angle hysteresis <strong>and</strong> globulin adsorption,<br />

J. Vac. Sci. Technol. B 19 (5) (2001) 1715–1720.<br />

[35] J.F. Oliver, C. Huh, S.G. Mason, Resistance to spreading of liquids by sharp edges,<br />

J. Colloid Interface Sci. 59 (3) (1977) 568–581.<br />

[36] M. Preuss, H.-J. Butt, Direct measurement of particle–bubble interactions in aqueous<br />

electrolyte: dependence on surfactant, Langmuir 14 (1998) 3164–3174.<br />

[37] M.L. Fielden, R.A. Hayes, J. Ralston, Surface <strong>and</strong> capillary forces affecting air bubble–<br />

particle interactions in aqueous electrolyte, Langmuir 12 (1996) 3721–3727.<br />

[38] A.V. Nguyen, J. Nalaskowski, J.D. Miller, The dynamic nature of contact angles as<br />

measured by atomic force microscopy, J. Colloid Interface Sci. 262 (2003) 303–306.<br />

[39] M. Preuss, H.-J. Butt, Measuring the contact angle of individual colloid particles,<br />

J. Colloid Interface Sci. 208 (1998) 468–477.<br />

[40] T. Pompe, A. Fery, S. Herminghaus, Imaging liquid structures on inhomogeneous<br />

surfaces by scanning force microscopy, Langmuir 14 (10) (1998) 2585–2588.<br />

[41] B.J. Kirby, E.F. Hasselbrink Jr., Zeta potential of microfluidic substrates: 1. Theory, experimental<br />

techniques, <strong>and</strong> effects on separations, Electrophoresis 25 (2004) 187–202.<br />

[42] P. Saulnier, J. Lachaise, G. Morel, A. Graciaa, Zeta potential of air bubbles in surfactant<br />

solutions, J. Colloid Interface Sci. 182 (1996) 395–399.<br />

[43] A. Graciaa, G. Morel, P. Saulner, J. Lachaise, R.S. Schechter, The zeta-potential of gas<br />

bubbles, J. Colloid Interface Sci. 172 (1995) 131–136.<br />

[44] D.B. Hough, L.R. White, The calculation of Hamaker constants from Lifshitz theory<br />

with applications to wetting phenomena, Adv. Colloid Interface Sci. 14 (1980) 3–41.<br />

[45] D.J. Bachman, S.J. Miklavcic, Deformation of fluid interfaces induced by electrical double<br />

layer forces <strong>and</strong> its effect on fluid–solid interactions, Langmuir 12 (1996) 4197–4204.<br />

[46] G. Gillies, M. Kapple, H.-J. Butt, Surface <strong>and</strong> capillary forces encountered by zinc<br />

sulfide microspheres in aqueous electrolyte, Langmuir 21 (2005) 5882–5886.<br />

[47] G. Gillies, K. Buscher, M. Preuss, M. Kapple, H.-J. Butt, K. Graf, Contact angles <strong>and</strong><br />

wetting behaviour of single micron sized particles, J. Phys. Condens. Matter 17 (2005)<br />

S445–S464.<br />

[48] M. Preuss, H.-J. Butt, Direct measurement of forces between particles <strong>and</strong> bubbles, Int.<br />

J. Miner. Process 56 (1999) 99–115.<br />

[49] D.J. Johnson, N. <strong>Hilal</strong>, K.E. Waters, K. Hadler, J.J. Cilliers, Measurements of interactions<br />

between particles <strong>and</strong> colloidal gas aphrons using a combined microscopic strategy,<br />

Langmuir 49 (2009) 4880–4885.<br />

[50] F. Sebba, Microfoams – an unexplained colloidal system, J. Colloid Interface Sci. 35 (4)<br />

(1971) 643–646.<br />

[51] J.J. Cilliers, D.J. Bradshaw, The flotation of fine pyrite using colloidal gas aphrons,<br />

Miner. Eng. 9 (2) (1995) 235–241.

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