By Ladislav Svarovsky
ISBN-10: 0750645687
ISBN-13: 9780750645683
Content material:
Preface to the fourth edition
, Pages xi-xii, L.S.
Preface to the 1st edition
, Pages xiii-xiv, L.S.
1 - advent to solid-liquid separation
, Pages 1-29, L. Svarovsky
2 - Characterization of debris suspended in liquids
, Pages 30-65, L. Svarovsky
3 - potency of separation of debris from fluids
, Pages 66-103, L. Svarovsky
4 - Coagulation and flocculation: half I
, Pages 104-129, M.A. Hughes
- Coagulation and flocculation: half II—Orthokinetic flocculation
, Pages 130-165, K.J. Ives
5 - Gravity rationalization and thickening
, Pages 166-190, L. Svarovsky
6 - Hydrocyclones
, Pages 191-245, L. Svarovsky
7 - Separation by way of centrifugal sedimentation
, Pages 246-280, L. Svarovsky
8 - filter out media, clear out rating
, Pages 281-301, Lawrence G. Loff
9 - Filtration fundamentals
, Pages 302-334, L. Svarovsky
10 - Cake washing
, Pages 335-348, L. Svarovsky
11 - tools for proscribing cake growth
, Pages 349-367, L. Svarovsky
12 - strain filtration: half I—Batch strain filtration
, Pages 368-392, L. Svarovsky
- strain filtration: half II—Continuous filtration
, Pages 393-408
13 - Vacuum filtration
, Pages 409-431, L. Svarovsky
14 - Centrifugal filtration
, Pages 432-441, L. Svarovsky
15 - Countercurrent washing of solids
, Pages 442-475, L. Svarovsky
16 - Separator sequence and networks
, Pages 476-511, L. Svarovsky
17 - the choice of sturdy - liquid separation equipment
, Pages 512-525, H.G.W. Pierson
18 - Particle-fluid interplay, thermodynamics of solid-liquid separation: half I—Particle-fluid interaction
, Pages 526-540, L. Svarovsky
- Particle-fluid interplay, thermodynamics of solid-liquid separation: half II—Thermodynamics of solid-liquid separation
, Pages 541-548, L. Svarovsky
Index
, Pages 549-554
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Extra info for Solid-Liquid Separation
Example text
37). 38) furnished with an extra scale of r values; s is estimated from the slope of the fine end of the distribution and the values of x0 and r are obtained from the relative shifts of the axes in the x and y directions respectively. Harris's three-parameter equation is very flexible and can be closely fitted to most uni-modal distributions. As its mathematical form lends itself easily to further treatment it has been used in a relatively involved evaluation of results from scanning centrifugal sedimentation instruments for particle size analysis 7.
Characterization of particles suspended in liquids 51 For sampling of powders in a dry form, Allen 12 reviewed and tested most methods available and found the spinning riffler to be the best. 7 Laboratory measurement of particle size There is an abundance of methods available for the measurement of particle size distributions and many excellent textbooks exist 3 which review the field in great depth. Because of the limited scope of this chapter only a short review of the methods particularly relevant to solid-liquid systems is given.
Walton, H. , 'Diatomite filtration--optimising the body feed', Filtration & Separation, May/June 237-238, (1982) 6. CSIRO, Magnetic Water Treatment, International News, Water & Waste Treatment, September, 4 (1980) 7. Anderson, N. J. , 17 (10), 1235-1243 (1983) 8. , April, 60-61 (1972) Introduction to solid-liquid separation 29 9. Oberteuffer, J. , 'Magnetic separation, a review', IEEE Trans. , 10, June, 223-238 (1974) 10. Swinton, E. , 'Separation of ion exchangers from slurries by magnetic drum separators, Part 5', paper 39 in: G.
Solid-Liquid Separation by Ladislav Svarovsky
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