Skip to main content

Methanol range extender for fuel cell vehicle

The innovative QBeak electric car is to benefit from a sophisticated methanol fuel cell range extender that will give it a range of at least 800km. Development work is being carried out on the project by a consortium of Danish companies. The plan is to develop a novel, range-extended electric vehicle that uses biomethanol as a fuel source. TheModularEnergyCarrier concept (MECc) project has just been granted funding from the Danish government. The reworked electric car is expected to deliver high market pote
July 17, 2012 Read time: 2 mins
RSSThe innovative QBeak electric car is to benefit from a sophisticated methanol fuel cell range extender that will give it a range of at least 800km. Development work is being carried out on the project by a consortium of Danish companies. The plan is to develop a novel, range-extended electric vehicle that uses biomethanol as a fuel source. TheModularEnergyCarrier concept (MECc) project has just been granted funding from the Danish government. The reworked electric car is expected to deliver high market potential due to a competitive price and specifications that can be adapted to the user’s individual requirements. This versatility is delivered by the use of methanol-fuelled fuel cells for range extension.

The concept vehicle is based on the QBeak electric car, now in the final phase of development by ECOmove. The car essentially has six energy slots distributed through its structure that can each contain battery, fuel cell, or methanol tank. This allows the on-board energy storage to be adapted to different needs. The basic range-extended model will have a 2.5kW fuel cell and tank occupying two slots, but the modular design means that more fuel cell plus tank modules can be added if longer range is required by the customer. The project partners say that the car will have a range of at least 800km.

The QBeak is a plug-in type vehicle: the concept allows the customer the flexibility of recharging the batteries during off-peak periods when electricity costs are low, or filling up with methanol in a few minutes when that convenience is desired.

EV industry cluster Insero E-Mobility is managing the project, and it is being funded under the Energy Technology Development and Demonstration Program (EDDP), which supports the development of technologies to make Denmark independent of fossil fuels by 2050.

Related Content

  • Receiving real time passenger information in Finland
    February 3, 2012
    David Crawford sees lively prospects for Finnish innovation
  • Global moves drive EV infrastructure
    October 7, 2020
    Charge+ in Singapore, Total in the UK and Electrify America all have new plans
  • 1,000 Nissan Leaf EVs sold in Norway in just six months
    April 30, 2012
    Nissan in Norway has announced that it has sold 1,000 of its electric Leaf cars in just six months, taking almost two per cent of the total car market in February this year demonstrating the impact of comprehensive incentives and developed charging infrastructure. The government support and charging infrastructure have helped the Nissan Leaf become the second best-selling Nissan in Norway and the ninth best-selling passenger car overall in February. Norway has the highest level of support in Europe for elec
  • EV charging will require increased investment in cyber security systems
    April 18, 2012
    The technology architecture associated with electric vehicle (EV) charging is continuing to evolve as utilities and other key players in the industry ecosystem identify business requirements and risks associated with adding significant new demands on the electrical grid. One of the most pressing challenges is related to securing financial transactions and end-to-end communications throughout the EV charging infrastructure, and a recent report from Pike Research indicates that these areas will be the focus o