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Foam forming technology enables utilization of long fibers
Torvinen Katariina
,
Harri Kiiskinen
,
Ari Jäsberg
, Pekka Martikainen
,
Jaakko Asikainen
,
Antti Koponen
Research output
:
Contribution to conference
›
Conference Abstract
›
Scientific
Overview
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Keyphrases
Pulp
100%
Cellulose Nanofibrils
100%
Long Fiber
100%
Foam Forming
100%
Forming Technology
100%
Oxidized Cellulose Nanofibrils
66%
Kraft
66%
Strength Properties
33%
Mediated Oxidation
33%
Paper Properties
33%
Papermaking
33%
Aqueous Foam
33%
Fiber Suspension
33%
Material Efficiency
33%
Water Energy
33%
Never-dried
33%
Strength Additive
33%
Raw Material Consumption
33%
Costing Methods
33%
Tensile Strength Properties
33%
Making Process
33%
Bleached Hardwood Kraft Pulp
33%
Microfluidizer
33%
Mechanical Fibrillation
33%
Total Charges
33%
Gap Mode
33%
Running Speed
33%
Paper Strength Properties
33%
Fiber Flocs
33%
INIS
foams
100%
fibers
100%
cellulose
62%
pulps
50%
efficiency
25%
water
25%
raw materials
25%
environment
12%
cost
12%
energy
12%
speed
12%
tensile strength
12%
charges
12%
flocculation
12%
additives
12%
oxidation
12%
feeding
12%
tanks
12%
hydrogels
12%
suspensions
12%
Material Science
Hardwood
100%
Hydrogel
100%
Ultimate Tensile Strength
100%
Kraft Pulp
100%