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Tratamento de Minérios

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CETEM <strong>Tratamento</strong> <strong>de</strong> <strong>Minérios</strong> – 5ª Edição 631<br />

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p. 153-76.<br />

48) SHI, F. N.; NAPIER-MUNN, T.J. (1996b) A mo<strong>de</strong>l for slurry rheology. International<br />

Journal of Mineral Processing, vol. 47, n o 1-2, p. 103-23.<br />

49) SOFRÁ, F; BOGER, F.D. (2002) Environmental rheology for waste minimisation in the<br />

minerals industry. Chemical Engineering Journal, vol.86 , p. 319-330.<br />

50) TURIAN, R.M.; MA, T.-W; HSU, F.-L.G.; SUNG, D.-J. (1997) Characterization, settling,<br />

and rheology of concentrated fine particulate mineral slurries. Pow<strong>de</strong>r<br />

Technology, vol. 93, p. 219-233.<br />

51) TURIAN, R.M.; MA, T.-W; HSU, F.-L.G.; SUNG, D.-J. (1998) Flow of concentrated non-<br />

Newtonian slurries: 1. Friction losses in laminar, turbulent and transition flow<br />

through straight pipe. Int. J. Multiphase Flow, vol.24, n o 2, p. 225-242.<br />

52) UHLHERR, P.H.T.; GUO, J.; TIUA, C.; ZHANG, X.-M.; ZHOU, J.Z.-Q.; FANG, T.-N. (2005)<br />

The shear-induced solid–liquid transition in yield stress materials with chemically<br />

different structures. J. Non-Newtonian Fluid Mech. vol.125, p. 101-119.<br />

53) UPADRASHTA, K.R.; KETCHAM, V.J.; MILLER, D.J. (1987) Tangential velocity profile<br />

for pseudoplastic power-law fluids in the hydrocyclone - a theoretical <strong>de</strong>rivation.<br />

International Journal of Mineral Processing, vol. 20, p. 309-18.

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