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Sustainable Drop-In Transport fuels from Hydrothermal Liquefaction of Low Value Urban Feedstocks
Pedersen, Thomas Helmer
(PI)
Rosendahl, Lasse
(Project Coordinator)
Sadetmahaleh, Komeil Kohansal
(Project Participant)
Castello, Daniele
(Project Participant)
Rommerdahl Bock, Anne
(Project Manager)
Haider, Muhammad Salman
(Project Participant)
Advanced Biofuels
Thermal Engineering
Mechatronic Systems
The Faculty of Engineering and Science
AAU Energy
Low Power Energy Harvesting and I-Solutions
Fundraising and Project Management
AAU Innovation
Overview
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Sort by
Weight
Alphabetically
Engineering
Low Value
100%
Hydrothermal Liquefaction
100%
Lignocellulosics
100%
Process Step
100%
Diesel Fuel
100%
Obtains
100%
Life Cycle Assessment
50%
Oil Phase
50%
Processing Parameter
50%
Optimization
50%
Process Chain
50%
Internals
50%
Pretreatment
50%
Environmental Impact
50%
Reduction
50%
Energy Yield
50%
Individual Process
50%
Demonstrates
50%
Energy Engineering
50%
Economic Benefit
50%
Agricultural and Biological Sciences
Feedstock
100%
Liquefaction
100%
Diesel Fuel
40%
Materials
20%
Organic Fertilizer
20%
Waste Wood
20%
Soil
20%
Barrels
20%
Europeans
20%
Bio-crude
20%
Sewage Sludge
20%