Collaborative “Closed Carbon Cycle Mobility” project develops climate-neutral fuels for the mobility of tomorrow
Aachen, March 2019 – In the past year, the collaborative project coordinated by FEV Europe GmbH, named “Closed Carbon Cycle Mobility – Climate-neutral fuels for the transportation of the future” (C3 Mobility), was launched. The project is part of the the German Federal Ministry for Economy and Energy’s “Energy revolution in transportation: Sector coupling through the use of power-based fuels” initiative. Its goal for the next three years is to determine new paths toward the CO2-neutral mobility of the future. To this end, 30 partners have joined forces in a cross-industry consortium from the areas of energy supply, processing technology, automotive and utility vehicle engine manufacturers, as well as research and development.
In energy and climate research, the goal is to develop system solutions together with all the relevant players. Thus, power, mobility, and heat cannot be considered separately, but must be jointly optimized through sector coupling. This is the only way that coordination and cost-efficient development of various infrastructures is possible, which is necessary in order to meet the requirements of the future fluctuating energy sources (sun and wind).
To this end, fluid energy carriers are a very effective means for transporting and storing large quantities of energy. Of particular importance is the use of regeneratively generated fuel based on methanol. In addition to direct use as fuel, C3 Mobility also intends to study further processing into other forms of fuel. Ways of reducing CO2 fleet emissions, as achieved today through the inclusion of power-based fuels, should also be shown. To this end, synthetic gasoline (through a methanol-to-gasoline process) will be produced in a demonstration facility and its use in a gasoline engine shown. In addition, also based on methanol, other fuels for diesel engine applications will be examined and assessed.
The C³ Mobility consortium will determine the vehicle suitability of the new fuels under real driving conditions. In doing so, a comprehensive assessment will be made regarding its effectiveness and eco-friendliness in the manufacturing and consumption chains, as well as in sales and market launch.
This research project is sponsored by the German Federal Ministry for Economy and Energy. Responsibility for the content of this publication lies with the author.
The FEV Group is a leading international service provider for turnkey vehicle development. Its range of engineering competencies includes consulting, development and testing of innovative vehicles and their powertrains from concept to series production. The range of services for propulsion systems include modern, highly efficient gasoline and diesel engines, transmissions, hybrid and fully electric drive systems and fuel cell systems as well as their integration, calibration and homologation into the vehicle. Further core topics at FEV are alternative fuels, the development of electronic control systems, vehicle connectivity and the automation of vehicles through hardware and software development. The service portfolio is fulfilled by customized test bench and measurement equipment including software solutions that allow essential work stages to be efficiently transferred from the road to the test bench or simulation.
The FEV Group employs more than 6600 highly qualified specialists in customer-oriented development centers at more than 40 locations on 5 continents.