Particle size measurement

Front Cover
Springer, Nov 21, 2013 - Technology & Engineering - 678 pages
Although man's environment, from the interstellar dust to the earth beneath his feet, is composed to a large extent of finely divided material, his knowledge of the propert ies of such materials is surprisingly slight. For many years the scientist has accepted that matter may exist as solids, liquids or gases although the dividing line between the states may often be rather blurred; this classification has been upset by powders, which at rest are solids, when aerated may behave as liquids, and when suspended in gases take on some of the properties of gases. It is now widely recognized that powder technology is a field of study in its own right. The industrial applications of this new science are far reaching. The size of fine particles affects the properties of a powder in many important ways. For example, it determines the setting time of cement, the hiding power of pigments and the activity of chemical catalysts; the taste of food, the potency of drugs and the sintering shrink ageof metallurgical powders are also strongly affected by the size of the particles of which the powder is made up. Particle size measurement is to powder technology as thermometry is to the study of heat and is in the same state of flux as thermometry was in its early days. Only in the case of a sphere can the size of a particle be completely described by one number.
 

Contents

Sampling of dusty gases in gas streams
36
Sampling and sizing from the atmosphere
64
Particle size shape and distribution
103
Sieving
165
Microscopy
187
Interaction between particles and fluids in a gravitational field
215
Dispersion of powders
246
Incremental methods of sedimentation size analysis
267
Radiation scattering methods of particle size determination
414
Permeametry and gas diffusion
432
Gas adsorption
465
Other methods for determining surface area
514
Determination of pore size distribution by gas adsorption
538
Mercury porosimetry
564
Online particle size analysis
583
Problems
621

Cumulative methods of sedimentation size analysis
298
Fluid classification
325
Centrifugal methods
350
The electrical sensing zone method of particle size distribution
392
Equipment and suppliers
639
Author Index
655
Subject Index
674
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