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Bio-oils in Contact with Steels and Copper Surfaces
Nina Bruun
Laboratory of Molecular Science and Engineering
Technologies for a Sustainable Future
Research output
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Types of Thesis
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Doctoral Thesis
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Collection of Articles
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Chemistry
Oil
100%
Bio-Oil
80%
Water Type
32%
Concentration
28%
Corrosion
20%
Acid Number
20%
Acid
20%
Rod Like Crystal
16%
Engine
16%
Oleic Acid
12%
Surface
12%
Amino Acid
12%
Free Fatty Acids
8%
Carboxylic Acid
8%
Glycerol
8%
L-Arginine
8%
Reaction Temperature
8%
Time
8%
Fuel
8%
Amount
8%
Crudity
8%
Fatty Acid
4%
Pyrolysis
4%
Biomass
4%
Carbon Dioxide
4%
Triglyceride
4%
Dioxygen
4%
Fossil Fuel
4%
Petroleum
4%
Potential
4%
Procedure
4%
Analytical Method
4%
Phase Composition
4%
Chemical Reaction Product
4%
Ambient Reaction Temperature
4%
Sample
4%
Chemical Reaction
4%
Inhibitor
4%
Device
4%
Degradation
4%
Viscosity
4%
Waste Material
4%
Density
4%
Protective
4%
Storage
4%
Contaminant
4%
Renewable Energy Source
4%
Biofuel
4%
Chemical Engineering
Water
32%
Acid
20%
Iron
20%
Water Content
16%
Oleic Acid
12%
Thermodynamic Property
12%
Copper
12%
Oil and Fat
12%
Phosphorus
8%
Carboxylic Acid
8%
Glycerol
8%
Temperature
8%
Fatty Acids
4%
Oxygen
4%
Sulfur
4%
Enthalpy
4%
Carbon Dioxide
4%
Material Science
Carbon Steel
4%