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Modelling ion exchange and flow in pulp suspensions: Dissertation
Erkki Räsänen
VTT Technical Research Centre of Finland
Research output
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Thesis
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Dissertation
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Dive into the research topics of 'Modelling ion exchange and flow in pulp suspensions: Dissertation'. Together they form a unique fingerprint.
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Keyphrases
Pulp
100%
Pulp Fibre Suspensions
100%
Ion Exchange
100%
Ion Flow
100%
Exchange Kinetics
57%
Magnesium
42%
Ionic Species
42%
Ion-exchange Mechanism
42%
Heavy Metal Removal
28%
Anions
28%
Low pH
28%
Manganese
28%
Donnan Model
28%
Anionic Species
28%
Removal Selectivity
28%
Fiber Network
14%
Cellulosic Fibers
14%
Aqueous Phase
14%
Aqueous Solution
14%
Radical Reactions
14%
Concentration Gradient
14%
Water Flow
14%
Metal Content
14%
Kraft Pulp
14%
Fiber Charge
14%
Donnan Equilibrium
14%
Reaction Time
14%
Flow Condition
14%
Realistic Model
14%
Chelation
14%
Solid Metals
14%
Chemical Concentration
14%
Negatively Charged
14%
Ionic Composition
14%
Rate-limiting Step
14%
Charged Fibers
14%
Rate of Change
14%
Complex Equilibria
14%
Metal Compounds
14%
Batch Type
14%
Repulsion
14%
Ion Diffusion
14%
Equilibrium Theory
14%
Pulp Washing
14%
Type Systems
14%
Exchange Flow
14%
Donnan Theory
14%
Ionic Distribution
14%
Metal Removal Efficiency
14%
Metal Removal Process
14%
Selectivity Control
14%
Displacement Solution
14%
Chemical Base
14%
INIS
pulps
100%
modeling
100%
suspensions
100%
ion exchange
100%
fibers
81%
metals
63%
removal
45%
ph value
45%
kinetics
36%
solutions
27%
equilibrium
27%
magnesium
27%
exchange models
27%
control
18%
concentration
18%
distribution
18%
ligands
18%
ions
18%
anions
18%
manganese
18%
bleaching
18%
transition metals
18%
efficiency
9%
interactions
9%
water
9%
iron
9%
charges
9%
diffusion
9%
chemistry
9%
dissolution
9%
walls
9%
inclusions
9%
solids
9%
oxygen
9%
copper
9%
laboratories
9%
testing
9%
washing
9%
cations
9%
aqueous solutions
9%
ionic composition
9%
donnan theory
9%
Material Science
Complexation
100%
Magnesium
75%
Manganese
50%
Transition Metal
50%
Kraft Pulp
25%
Chemical Engineering
Ion Exchange
100%
Transition Metal
20%