Efforts to change road transport is focused on electrifying the transport sector. The main disadvantages of this strategy are that it requires replacing the existing vehicle fleet and an entirely new
The main purpose of this project is to develop and demonstrate an optimized heating plant that will have much higher efficiency and much less CO2 emissions than the heating plants that are built today
HydroThermal Liquefaction (HTL) has proven itself as the most resource-, energy- and cost efficient technology pathway for conversion to liquid fuels of a wide range of sustainable feedstocks
The purpose is to develop a sustainable, operational and commercially viable biofuel to replace currently used fossil-based fuels in the maritime sector. Developments are based on patented.
The aim of the project is to develop ensiling as a method for pretreatment of straw which allows use in biogas plants and ensures a higher biogas yield. Wet or moist straw is treated with ’ensiling
Biowaste2Gas’ laboratory scale model is upscaled to a pilot plant. Following the initial testing, the plant is moved to demo-site for lifetime testing. In parallel, AU documents the potential in
InjectMe develops a biological Power-to-Methane technology that uses electricity and CO2 from biogas to produce biomethane (electrofuel). The aim of InjectMe is to develop a cost-efficient system for
Demonstrating that the effect of using pre-treated low valuable biomasses is an improved capacity of any given biogas plant by demonstrating that the pre-treatment provides the same amount of
Admixing of alcohols in motor fuels can result in CO2 reductions and even better combustion, but also holds a number of technical challenges. The International Energy Agency wished to create a global
The project will compare next generation biodiesel to current biodiesel. HVO Biodiesel has superior properties compared to the traditional FAME type biodiesel produced by DAKA and Emmelev.
The project focuses on improving the gas yield from animal manure, straw and degassed fiber residues by pre-treatment. The objective is to demonstrate process stability during continuous pilot plant
RETROMAX aims to develop and demonstrate a slurry treatment technology that economically increases the amount of animal slurry/manure based feedstock to biogas plants resulting in a higher biogas
The project aims at testing the Pyroneer technology as a promising platform for improved utilization of a variety of low-value and difficult fuels from different sectors in society in order to produce
Topsoe's new methanol reactor (CONRAD) produces syngas and methanol from biomass. The project will demonstrate that CONRAD works as expected at industrial conditions and investigate how this novel
The purpose of the project is to create a sustainable systemic energy concept based on local CO2 neutral energy sources by integrating biomass based technologies and optimizing the energy flows
The aim of lEA Bioenergy Task 37 is the international collaboration and mutual exchange of research, knowledge and information between the member countries, in the area of production and utilisation