Skip to main content

Ballard and Siemens sign $9 million agreement on fuel cell engine train

Ballard Power Systems (BPS) has announced it has signed a development agreement with Siemens, with a contemplated value of $9 million (£6.8 million), to develop a zero-emission fuel cell engine to power Siemens’ Mireo light rail train in Germany. Initial deployments of the train are planned for 2021. BPS will develop a 200-kilowatt fuel cell engine for integration into the new train platform which aims to reach speeds of up to 160 km per hour (100 miles per hour). Sabrina Soussan, chief executive officer
November 16, 2017 Read time: 2 mins
Ballard Power Systems (BPS) has announced it has signed a development agreement with 189 Siemens, with a contemplated value of $9 million (£6.8 million), to develop a zero-emission fuel cell engine to power Siemens’ Mireo light rail train in Germany. Initial deployments of the train are planned for 2021.
 
BPS will develop a 200-kilowatt fuel cell engine for integration into the new train platform which aims to reach speeds of up to 160 km per hour (100 miles per hour).

Sabrina Soussan, chief executive officer of the Mobility Division at Siemens said, "Our cooperation with Ballard is a decisive step towards replacing diesel-powered rail vehicles with emissions-free vehicles in the long-term interests of sustainable and climate-friendly mobility. We want to be able to offer our customers flexible train solutions for various suburban routes, which vary according to regional conditions and technical possibilities."

Randy MacEwen, BPS president and chief executive officer added, "We are seeing rapid market demand growing for clean energy fuel cell technology in a range of Heavy Duty Motive applications, including trains, trams, transit buses and commercial trucks. This Development Agreement with Siemens, a major industrial conglomerate and leading global train OEM, is a testament to the overall value proposition offered by Ballard's fuel cell technology in a demanding use case and duty cycle. In this application, fuel cells enable electrification with range, without the need for costly catenary wire infrastructure." 

For more information on companies in this article

Related Content

  • Is GIS modelling the answer to the implications of age?
    January 26, 2012
    Geoff Zeiss of Autodesk talks about the convergence going on between GIS and other software systems which will revolutionise the design and construction of nations' utilities. The issue is that we're getting old. But forget the discovery of body hair in places it never used to be, whether or not to dye, contact lenses versus glasses - in fact, put aside entirely the decision to age gracefully or outrageously; the personal implications pale next to the effects on wider society. Faced with the problem of how
  • First electric buses hit London’s streets
    December 19, 2013
    Transport for London (TfL) and bus operator Go-Ahead London have begun a trial of the capital’s first electric buses on two routes in the city. The 12-metre single deck buses were built by Chinese manufacturer BYD Auto have zero tail pipe emissions, resulting in lower carbon emissions. The trial will help TfL develop plans for greater use of electric buses in central London in the future, supporting the Mayor’s vision of a central London Ultra Low Emission Zone. The trial will be used to establish wh
  • Remote remedies help US authorities identify bridge deficiencies
    September 6, 2017
    Every day 185 million vehicles – cars, trucks, school buses, emergency response units - cross one or more of America’s 55,710 'structurally compromised' steel and concrete road bridges, the highest concentration of which are in Iowa (nearly 5,000), Pennsylvania and Oklahoma. Nearly 2,000 of these crossings are located on interstate highways, according to the American Road and Transportation Builders Association's recent analysis of the US Department of Transportation's 2016 National Bridge Inventory.
  • Automotive OEMs standardise testing to comply with RDE deadlines, say researchers
    February 15, 2017
    Following 'dieselgate', the previously lax automobile emission testing procedures tightened and all European original equipment manufacturers (OEMs) are now required to implement real driving emissions (RDE). In September, RDE testing will have a conformity factor of 2.1, which will change to 1.5 by September 2021. OEMs will be more transparent with their testing methods and results. After the implementation of RDE, adoption of World Harmonisation Light Vehicle Test Procedure (WLTP) will be simpler. The