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Theoretical studies on aerosol agglomeration processes: Dissertation
Kari Lehtinen
VTT Technical Research Centre of Finland
Research output
:
Thesis
›
Dissertation
›
Collection of Articles
3
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Citations (Scopus)
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Dive into the research topics of 'Theoretical studies on aerosol agglomeration processes: Dissertation'. Together they form a unique fingerprint.
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Keyphrases
Aerosol
100%
Submicron Particles
100%
Agglomeration Process
100%
Agglomerator
75%
Agglomeration
75%
Reactor
50%
System Parameters
50%
Primary Particle Size
50%
Free Jet
50%
Flue Gas
25%
Flue Gas Cleaning
25%
Mathematical Model
25%
Unconventional Gas
25%
Collision Efficiency
25%
Numerical Solution
25%
Aerosol Particles
25%
Original Ideas
25%
Typical Materials
25%
Gas Cleaning
25%
Large Particle
25%
Aerosol Behavior
25%
Particulate Phase
25%
Theoretical Modeling
25%
Gasses
25%
Characteristic Timescales
25%
Second Application
25%
Alternating Electric Field
25%
General Dynamic Equation
25%
Unipolar Charging
25%
Agglomerate Structure
25%
Rate Law
25%
Volume Loading
25%
Materials Synthesis
25%
Nanomaterial Synthesis
25%
Cooling Environment
25%
Aerosol System
25%
Jet Reactor
25%
Dendrite Formation
25%
Nanoparticle Size
25%
Agglomeration Theory
25%
Linear Growth Rate
25%
Cleaning Device
25%
Opposite Polarity
25%
Aerosol Route
25%
Flue Gasses
25%
INIS
particles
100%
aerosols
100%
agglomeration
100%
collisions
40%
size
30%
coalescence
30%
applications
20%
dynamics
20%
particle size
20%
removal
20%
flue gas
20%
cleaning
20%
gases
20%
synthesis
20%
reactor materials
20%
performance
10%
comparative evaluations
10%
efficiency
10%
environment
10%
nanoparticles
10%
devices
10%
precursor
10%
molecules
10%
mathematical models
10%
equations
10%
modeling
10%
volume
10%
charges
10%
range
10%
nanomaterials
10%
vapors
10%
loading
10%
particulates
10%
velocity
10%
capture
10%
jets
10%
laboratories
10%
cooling
10%
electric fields
10%
apparatus
10%
numerical solution
10%
dendrites
10%
jet reactors
10%
Engineering
Agglomerator
100%
Theoretical Study
100%
Gas Cleaning
66%
System Parameter
66%
Flue Gas
66%
Size of Particle
33%
Size Range
33%
Characteristic Time
33%
Produced Material
33%
Desired Material
33%
Nanoparticles
33%
Nanomaterial Synthesis
33%
Numerical Solution
33%
Mathematical Model
33%
Electric Field
33%
Discretization
33%
Material Science
Flue Gas
100%
Nanostructured Material
50%
Theoretical Modeling
50%
Materials Synthesis
50%
Nanoparticle
50%
Chemical Engineering
Gas Cleaning
100%
Nanoparticle
100%
Flue Gas Cleaning
100%