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Agglomerators

The standard NF T 65-011 distinguishes the bitumen emulsions by their ionic nature (anionic or cationic), their stability with respect to agglomerates and weight content of base binder. There are 20 grades of emulsions. [Pg.288]

Very finely divided minerals may be difficult to purify by flotation since the particles may a ere to larger, undesired minerals—or vice versa, the fines may be an impurity to be removed. The latter is the case with Ii02 (anatase) impurity in kaolin clay [87]. In carrier flotation, a coarser, separable mineral is added that will selectively pick up the fines [88,89]. The added mineral may be in the form of a floe (ferric hydroxide), and the process is called adsorbing colloid flotation [90]. The fines may be aggregated to reduce their loss, as in the addition of oil to agglomerate coal fines [91]. [Pg.477]

Then tire pressure is reduced to transfonn tire frozen liquid to a vapour and to remove it. Freeze drying is commonly used to make powders tliat are not agglomerated. [Pg.2767]

The speed of the method comes from two sources. First, all of the macroscopic cells of the same size have exactly the same internal structure, as they are simply formed of tessellated copies of the original cell, thus each has exactly the same multipole expansion. We need compute a new multipole expansion only once for each level of macroscopic agglomeration. Second, the structure of the periodic copies is fixed we can precompute a single transfer... [Pg.461]

Clarke,. 1. and Freakley, P.K., 1995. Modes of dispersive mixing and filler agglomerate size distributions in rubber compounds, Plast. Rubber Compos. Process. Appl. 24, 261-266. [Pg.188]

Prepare a saturated solution of sodium sulphide, preferably from the fused technical sodium polysulphide, and saturate it with sulphur the sulphur content should approximate to that of sodium tetrasulphide. To 50 ml. of the saturated sodium tetrasulphide solution contained in a 500 ml. round-bottomed flask provided with a reflux condenser, add 12 -5 ml. of ethylene dichloride, followed by 1 g. of magnesium oxide to act as catalyst. Heat the mixture until the ethylene dichloride commences to reflux and remove the flame. An exothermic reaction sets in and small particles of Thiokol are formed at the interface between the tetrasulphide solution and the ethylene chloride these float to the surface, agglomerate, and then sink to the bottom of the flask. Decant the hquid, and wash the sohd several times with water. Remove the Thiokol with forceps or tongs and test its rubber-like properties (stretching, etc.). [Pg.1024]

Fig. 1.11 The external surface of the individual particles in I is partially converted into an internal surface (denoted by heavy lines) when the agglomerate in II is formed. Fig. 1.11 The external surface of the individual particles in I is partially converted into an internal surface (denoted by heavy lines) when the agglomerate in II is formed.
As pointed out earlier (Section 3.5), certain shapes of hysteresis loops are associated with specific pore structures. Thus, type HI loops are often obtained with agglomerates or compacts of spheroidal particles of fairly uniform size and array. Some corpuscular systems (e.g. certain silica gels) tend to give H2 loops, but in these cases the distribution of pore size and shape is not well defined. Types H3 and H4 have been obtained with adsorbents having slit-shaped pores or plate-like particles (in the case of H3). The Type I isotherm character associated with H4 is, of course, indicative of microporosity. [Pg.287]

An agglomeration of molecules containing ionic heads and hydrophobic tails, which form into a structure with a hydrophobic interior and a hydrophilic exterior. [Pg.606]

A second form of desolvation chamber relies on diffusion of small vapor molecules through pores in a Teflon membrane in preference to the much larger droplets (molecular agglomerations), which are held back. These devices have proved popular with thermospray and ultrasonic nebulizers, both of which produce large quantities of solvent and droplets in a short space of time. Bundles of heated hollow polyimide or Naflon fibers have been introduced as short, high-surface-area membranes for efficient desolvation. [Pg.108]

Agents, chemical warfare Agent VX [50782-69-9] Age-resistant elastomers AgeRiteDPPD [74-31-7] AgeRite White AgeRite Write [93-46-9] Ageusia Agglomeration... [Pg.21]

Drug testing Drum agglomerators Drum brakes Drum packages Drums Dry ash... [Pg.346]

Powder Preparation. The goal in powder preparation is to achieve a ceramic powder which yields a product satisfying specified performance standards. Examples of the most important powder preparation methods for electronic ceramics include mixing/calcination, coprecipitation from solvents, hydrothermal processing, and metal organic decomposition. The trend in powder synthesis is toward powders having particle sizes less than 1 p.m and Httie or no hard agglomerates for enhanced reactivity and uniformity. Examples of the four basic methods are presented in Table 2 for the preparation of BaTiO powder. Reviews of these synthesis techniques can be found in the Hterature (2,5). [Pg.310]

A fundamental requirement in powder processing is characterization of the as-received powders (10—12). Many powder suppHers provide information on tap and pour densities, particle size distributions, specific surface areas, and chemical analyses. Characterization data provided by suppHers should be checked and further augmented where possible with in-house characterization. Uniaxial characterization compaction behavior, in particular, is easily measured and provides data on the nature of the agglomerates in a powder (13,14). [Pg.310]


See other pages where Agglomerators is mentioned: [Pg.252]    [Pg.487]    [Pg.301]    [Pg.925]    [Pg.2761]    [Pg.2762]    [Pg.2764]    [Pg.2765]    [Pg.2766]    [Pg.2772]    [Pg.2786]    [Pg.141]    [Pg.142]    [Pg.1109]    [Pg.21]    [Pg.21]    [Pg.21]    [Pg.237]    [Pg.606]    [Pg.775]    [Pg.252]    [Pg.509]    [Pg.515]    [Pg.876]    [Pg.257]    [Pg.259]    [Pg.315]    [Pg.358]    [Pg.443]    [Pg.203]    [Pg.310]    [Pg.310]    [Pg.310]    [Pg.311]    [Pg.312]    [Pg.313]   
See also in sourсe #XX -- [ Pg.390 ]




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A Glossary of Agglomeration

Abrasive agglomerate

Abrasives agglomeration

Acoustic agglomeration

Acoustic agglomeration power plants

Acoustic agglomerator

Acrylic acid agglomeration processing

Adhesion and Agglomeration

Aerosol agglomeration

Ageing process Agglomerates

Agglomerate Agglomeration

Agglomerate Agglomeration

Agglomerate Fragmentation

Agglomerate Model for the Active Catalyst Layer

Agglomerate Model of Electrocatalysis

Agglomerate area ratio

Agglomerate bonding

Agglomerate compounding material

Agglomerate count

Agglomerate definition

Agglomerate diffusion coefficients

Agglomerate flotation

Agglomerate formation

Agglomerate formation distributions

Agglomerate formation morphology

Agglomerate formation, titanium

Agglomerate forming

Agglomerate growth, regions

Agglomerate measurement

Agglomerate models

Agglomerate nucleation and growth

Agglomerate particle form

Agglomerate particle interactions

Agglomerate particle size

Agglomerate quality

Agglomerate rupture

Agglomerate saturated

Agglomerate size

Agglomerate size distributions

Agglomerate stability

Agglomerate strength prediction

Agglomerate strength, compression/compaction

Agglomerate toughening

Agglomerate volume calculation

Agglomerate-free suspension

Agglomerated

Agglomerated Product

Agglomerated hollow particles

Agglomerated materials, fracture properties

Agglomerated microcapsules

Agglomerated particles

Agglomerated systems, relaxation

Agglomerates

Agglomerates 257-9 titanate

Agglomerates and agglomeration

Agglomerates bonding mechanisms

Agglomerates breakage

Agglomerates breaking

Agglomerates carbon

Agglomerates deformation

Agglomerates disintegrate

Agglomerates disintegration

Agglomerates dispersion

Agglomerates during crystallization

Agglomerates effectiveness factor

Agglomerates kinetics

Agglomerates material structure

Agglomerates mechanical properties

Agglomerates mechanical strength

Agglomerates morphology

Agglomerates of carbon black

Agglomerates parameters influencing

Agglomerates primary

Agglomerates processes

Agglomerates steps involved

Agglomerates strength

Agglomerates structure

Agglomerates tensile strength

Agglomerates with Salt Bridges

Agglomerates, description

Agglomerates, effects

Agglomerates, electron microscopy

Agglomerates, mixing time

Agglomerates, randomly oriented

Agglomerates, separators

Agglomerating Burner Process

Agglomerating Fluidized-Bed Gasifier

Agglomerating Index

Agglomerating agent

Agglomerating coals

Agglomerating populations, simulation

Agglomeration

Agglomeration

Agglomeration Method

Agglomeration Terms Links

Agglomeration aggregation

Agglomeration agitation

Agglomeration and Ripening

Agglomeration and coating

Agglomeration and defluidization

Agglomeration applications

Agglomeration atomizer speed

Agglomeration belt conveyor

Agglomeration binders

Agglomeration binding mechanisms

Agglomeration breakage

Agglomeration by coalescence

Agglomeration by heat

Agglomeration by immiscible liquid wetting

Agglomeration circuit

Agglomeration clusters

Agglomeration collection efficiency

Agglomeration compaction

Agglomeration compression

Agglomeration coordination number

Agglomeration crystal

Agglomeration dense phase

Agglomeration density

Agglomeration disc

Agglomeration discrete modeling

Agglomeration drum

Agglomeration during Crystallization

Agglomeration effects

Agglomeration equipment operation variables

Agglomeration extent

Agglomeration flocculation

Agglomeration flotation

Agglomeration fluidized-bed gasifier

Agglomeration formation mechanism

Agglomeration glass particles

Agglomeration globule

Agglomeration gold particle

Agglomeration granulation)

Agglomeration growth

Agglomeration growth model (

Agglomeration in Environmental Control

Agglomeration in liquid media

Agglomeration in suspension

Agglomeration in the Pharmaceutical Industry

Agglomeration industrial applications

Agglomeration kinetics

Agglomeration mechanisms

Agglomeration mechanisms abrasion

Agglomeration mechanisms breakage

Agglomeration mechanisms coalescence

Agglomeration model

Agglomeration moisture

Agglomeration natural

Agglomeration nucleation

Agglomeration of Au particles

Agglomeration of Nanodiamond

Agglomeration of Nanoparticles in a Stirred Vessel

Agglomeration of coals

Agglomeration of lead particles

Agglomeration of nanoparticles

Agglomeration of planetesimals and planets

Agglomeration of powdered detergents introduction

Agglomeration of powders

Agglomeration of precipitates

Agglomeration of silica

Agglomeration of the Hydrogenation Component

Agglomeration pan

Agglomeration partial

Agglomeration particle formulation

Agglomeration particles properties

Agglomeration phase

Agglomeration porosity

Agglomeration powder compaction

Agglomeration pressure

Agglomeration primary particle properties

Agglomeration probability

Agglomeration processes

Agglomeration processes classification

Agglomeration processes compact density

Agglomeration processes compact strength

Agglomeration processes compaction pressure

Agglomeration processes controlling powder compaction

Agglomeration processes paste extrusion

Agglomeration processes powder compaction

Agglomeration processes powder feeding

Agglomeration processes wetting

Agglomeration product properties

Agglomeration products

Agglomeration random

Agglomeration rate

Agglomeration reactive crystallization

Agglomeration resin

Agglomeration reverse addition

Agglomeration selective

Agglomeration separation processes

Agglomeration silica fume

Agglomeration silver particle

Agglomeration spherical

Agglomeration spontaneous

Agglomeration strength

Agglomeration study

Agglomeration supersaturation

Agglomeration techniques

Agglomeration temperatures

Agglomeration tendencies

Agglomeration tensile strength

Agglomeration triggering

Agglomeration tumble

Agglomeration tumbling

Agglomeration unwanted

Agglomeration wanted

Agglomeration wetting

Agglomeration, control using colloid

Agglomeration, droplet, first step

Agglomeration, droplet, first step demulsification

Agglomeration, of colloids

Agglomeration, of particles

Agglomeration, particle, dispersions

Agglomeration, particle, dispersions copolymers

Agglomeration, particulate matter

Agglomeration, quenching and the glucose sink

Agglomeration, secondary

Agglomeration, shape factors

Agglomeration, solids

Agglomeration/deagglomeration

Agglomerations, 108 high-efficiency

Agglomerator batch

Agglomerator fluidized bed

Agglomerator high pressure

Agglomerator medium pressure

Agglomerator mixer

Agglomerator suspended solids

Agglomerization

Agglomerization

Aggregates - agglomerates

Aggregation Fundamentals Strength of Agglomerates

Aggregation and agglomeration

Agitation methods — mixer agglomeration

Agitation methods — tumbling agglomeration

Anion latex agglomerated

Anion nanobead-agglomerated

Anti-agglomerants

Applications of ultrasound-assisted agglomeration

Ash agglomeration

Autocatalytic agglomeration

Average Particle and Agglomerate Sizes

Ballistic agglomeration

Basic mechanisms of ultrasound-assisted agglomeration

Binders for agglomeration

Binding Mechanisms of Agglomeration

Blending agglomeration process

Bonding Mechanisms in Agglomerates

Brownian agglomeration

Bubble agglomeration

Carbon agglomeration

Carbon black agglomerates

Carbon black agglomerates model

Carbon nanotube-reinforced composites agglomerates

Catalyst agglomeration

Catalyst layer agglomeration

Catalyst layer flooded agglomerate model

Cation agglomerated

Cation exchanger latex-agglomerated

Chain-like agglomerate

Coal agglomerates

Coefficients) agglomerate

Colloid agglomeration flocculation

Colloidal agglomerate

Colloidal agglomeration

Colloidal particles Agglomeration

Colloidal suspension agglomeration kinetics

Complex Agglomerization

Composite Agglomeration

Composite dispersed materials Agglomeration

Computer simulation of agglomerate

Consideration of Primary Particle Properties in Agglomeration

Core spherical agglomerates

Criteria and Phenomena of Agglomeration

Cross-link agglomerations

Crushed Ore Agglomeration

Crystal agglomeration and disruption

Crystallization agglomeration)

De-agglomeration

Defect agglomeration

Desired and Undesired Agglomeration

Detergents, production agglomeration processing

Determination of Agglomerate Strength

Diffusion-limited agglomeration

Diffusion/agglomeration

Disc agglomerator operation

Discrete agglomeration

Dispersing agglomerates

Dispersion and Agglomeration

Dispersion of agglomerates

Droplet agglomeration

Dry agglomerates

Effect of filler agglomerates

Electrode agglomerate models

Electrodes flooded agglomerate

Electrostatic agglomerated

Electrostatic agglomerated substrates

Factors Affecting Melt Agglomeration

Falling curtain agglomerators

Ferrite, agglomeration

Fiber agglomeration

Filler agglomeration

Fillers agglomerates

Flooded agglomerate model performance modeling

Flooded agglomerate models

Flotation, bubble and foam separations spherical agglomeration

Fluidized bed agglomeration

Fluidized bed agglomeration performance data

Fluidized bed agglomeration sketches

Formation of Agglomerates

Formation of Filler Agglomerates in a Single Screw Extruder

Fractal agglomerate

Fundamentals of Agglomeration

Glass agglomeration

Glossary of agglomeration

Gold particle agglomerate

Green agglomerates

Hierarchical model agglomerate

High-pressure agglomeration

Hydrophobic agglomeration

Implications of Shear on Agglomerates in Solution

Industrial Applications of Agglomeration

Introduction Agglomeration Processes

Iron ore agglomerates

Iron ore agglomeration

Kinetics of Particle Agglomeration

Kinetics of agglomeration

Latex Agglomerated Ion Exchangers

Latex agglomerated resins

Latex-Agglomerated Anion Exchangers

Lead salt agglomeration

Liquid suspension, spherical agglomeration

Loss of Platinum Surface Area Due to Agglomeration

Mechanical Properties of Agglomerates

Mechanical Strength of Agglomerates

Melt agglomeration

Melt agglomeration distribution

Melt agglomeration high-shear mixers

Melt agglomeration immersion

Melt agglomeration mechanism

Melt agglomeration meltable binder

Melt agglomeration modes

Melt agglomeration solid fine particles

Melt agglomeration surface plasticity

Melting technique melt agglomeration

Metal agglomeration-resistant catalysts

Microbeads, functionalized, agglomerates

Mixing agglomeration

Model for agglomeration

Modeling agglomeration

Moisture agglomerate stability

Molecule agglomerations

Molten agglomerate models

Monte agglomeration

Montmorillonite agglomerate

Nanobead-Agglomerated Anion Exchangers

Nanobead-Agglomerated Cation Exchangers

Nanodiamonds agglomeration

Nanoparticle agglomerate

Nanoparticle agglomeration state

Nanoparticles agglomeration

Nanoparticles agglomeration tendency

Nanotube agglomerates

Nickel particles, preventing agglomeration

Oiling Out, Agglomeration Aggregation

Origin and Nature of Agglomerates

Orthokinetic agglomeration

Other Agglomeration Methods for Special Applications

Other methods for the determination of agglomerate strength

Parameters Influencing Agglomeration

Particle Agglomeration Measurements

Particle Agglomeration and Granule Growth

Particle Brownian agglomeration

Particle agglomerate forming

Particle agglomerates

Particle agglomeration

Particle shear induced agglomeration

Particle size agglomeration

Particulate solids agglomeration

Particulates agglomeration

Pellets spherical agglomeration

Perikinetic agglomeration

Physical and Chemical Parameters for Producing Agglomerated NPKs

Pigment agglomerates

Pigment agglomeration

Platinum agglomeration

Platinum catalysts agglomeration

Platinum particle agglomeration

Point defect agglomeration

Polymer agglomeration

Powder agglomerate properties

Powder layering pelletization particle agglomeration

Powdered detergents agglomeration

Powders agglomeration

Power law agglomerates

Precipitates agglomeration

Precipitation kinetics agglomeration

Pressure Agglomeration Compaction

Pressure agglomeration (compaction) methods for size enlargement of solid fertilizers

Pressure agglomeration equipments

Pressure agglomeration mechanism

Primary agglomeration

Process of Agglomeration

Process operations agglomeration

Product properties agglomerates

Pt agglomeration

Re-agglomeration

Review of Different Latex-Agglomerated Anion Exchangers

Rolling agglomeration

Rubber agglomerate

Rubber latex, agglomerate

SINTEGRATION, AGGLOMERATION, AND SIZE SEPARATION OF PARTICULATE SOLIDS

Scientific methods for the determination of agglomerate strength

Separator nanobead-agglomerated

Shear induced agglomeration

Silica agglomerates

Silica agglomeration

Single particle agglomerate

Size Enlargement Solids Spherical agglomeration

Size enlargement Agglomeration

Size methods spherical agglomeration

Solid agglomerate

Solids mixing agglomeration

Special characteristics and problems of pharmaceutical agglomerates

Spherical agglomerates

Spherical agglomeration classification

Spherical agglomeration coalescence process

Spherical agglomeration nucleation

Spherical agglomeration pelletization process

Spray-type agglomerator

Starved Feeding to Avoid Agglomerate Formation

Stochastic agglomeration

Strength of Agglomerates

Strength of Agglomerates Saturated with Liquid

Structure of aggregate and agglomerate

Sugars agglomerated

Sulfate agglomerate

Surface science agglomeration

Tabling agglomeration

The mechanisms of agglomeration by coalescence

Theoretical tensile strength of agglomerates

Thin-film/flooded agglomerate model

Tumble growth agglomeration

Typical agglomerate strengths

Ultrasonic agglomeration

Ultrasound-Assisted Agglomeration or Aggregation

Utility agglomerates from

Velocity gradient agglomeration

WET FORMING PROCESSES AS A POTENTIAL SOLUTION TO AGGLOMERATION PROBLEMS

Water agglomeration

Wet agglomerates

Wet agglomeration

Wet agglomeration process

Wetting of powder aggregates and agglomerates

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