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Filtration of clay suspensions through sand

Published online by Cambridge University Press:  09 July 2018

K. J. Ives*
Affiliation:
Department of Civil and Municipal Engineering, University College, London WC1E 6BT

Abstract

The filtration of suspensions containing clay and other particles in water is a common process in drinking water treatment. Such filtration processes are very efficient, producing clear water containing less than 1 mg/l from suspensions with particle concentrations of up to 100 mg/l. This filtration is not straining, but a process of collection of clay particles on the sand surfaces in the pores. The clays may range in size from sub-micron to ∼20 µm, and may be flocculated, and are retained in pores ∼200 µm in size within sand grains ∼500 µm in diameter. The collection process has three principal components (i) transport of clay particles across laminar water streamlines by diffusion, gravity and hydrodynamic forces, (ii) attachment by electrical or van der Waals' forces with hydrodynamic forces intervening, (iii) detachment by fluid shear or instabilities caused by arriving particles. Mathematical and physical models relate suspension concentration, quantity of deposit and permeability to depth in a filter, and time of operation. Fibre-optic endoscopes with CCTV enable video recordings to be made of the behaviour of clay particles in the filter pores, at magnifications up to 500 ×.

Type
Research Article
Copyright
Copyright © The Mineralogical Society of Great Britain and Ireland 1987

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References

Ives, K.J. (Editor) (1975) The Scientific Basis of Filtration. Noordhoff International, Leyden.Google Scholar
Ives, K. J. & Clough, G. (1985) Optical fibre investigations of filtration processes. Pp. 6976 in: Instrumentation and Control of Water and Wastewater Treatment and Transport Systems (Drake, R. A. R., editor). Pergamon, Oxford.Google Scholar
Purchas, D. B. (Editor) (1977) Solid/Liquid Separation Equipment Scale-Up. Uplands Press, Croydon.Google Scholar
Rushton, A. (Editor) (1985) Mathematical Models and Design Methods in Solid-Liquid Separation. Martinus Nijhoff, Dordrecht.Google Scholar
Svarovsky, L. (Editor) (1981) Solid-Liquid Separation. Butterworths, London.Google Scholar