Skip to main content

Shell consortium plans bulk hydrogen production project

A consortium of Shell Deutschland Oil and Shell Energy Europe with partners ITM Power, SINTEF, thinkstep and Element Energy plans a project to install a large scale electrolyser to produce hydrogen at the Wesseling refinery site within the Rheinland Refinery Complex. With a capacity of ten megawatts, this would be the largest unit of its kind in Germany and the world’s largest PEM (Polymer Electrolyte Membrane) electrolyser.
September 4, 2017 Read time: 2 mins

A consortium of Shell Deutschland Oil and Shell Energy Europe with partners ITM Power, SINTEF, thinkstep and Element Energy plans a project to install a large scale electrolyser to produce hydrogen at the Wesseling refinery site within the Rheinland Refinery Complex.

With a capacity of ten megawatts, this would be the largest unit of its kind in Germany and the world’s largest PEM (Polymer Electrolyte Membrane) electrolyser. This electrolyser technology is also suitable to improve the stability of the electricity grid with a growing share of intermittent renewable energy sources, such as from solar and wind.

The consortium has been invited to the preparation of a grant agreement by the European Fuel Cells and Hydrogen 2 Joint Undertaking (FCH 2 JU), following a competitive call for proposals.

Today, the refinery uses approximately 180,000 tons of hydrogen per year in its various plants. The hydrogen is currently produced as a by-product of the refining process or through natural gas reforming, while electrolysis uses electricity to split water into the base components of hydrogen and oxygen.

The project aims to enable the construction and operation of a large scale10 MW electrolyser that can produce high quality hydrogen and CO2 free hydrogen while demonstrating technology and cost improvements through up-scaling and new business applications. Electrolysis using low-cost renewable electricity could be a key technology for a potential CO2 free hydrogen production in the Shell Rheinland Refinery.

Related Content

  • Funding to accelerate take up of hydrogen vehicles and infrastructure
    March 20, 2017
    The UK government has announced a new US$28.5 million (£23 million) fund to accelerate the take up of hydrogen vehicles and roll out more cutting-edge infrastructure. Hydrogen fuel providers will be able to bid for funding in partnership with organisations that produce hydrogen vehicles to help build high-tech infrastructure, including fuel stations. The funding will boost the creation of hydrogen fuel infrastructure and uptake of hydrogen-powered vehicles. A competition will be launched this summer,
  • Europe’s EasyWay project accommodates political requirements
    May 29, 2013
    The EasyWay project has evolved to take account of political developments at the European level. By Jason Barnes The European Union’s (EU’s) EasyWay ITS deployment project has its roots in the ambitions of former European Commission President Jacques Delors with regard to truly international networks for energy, information and for transport. Definition of what became known as the Trans-European Transport Network (TEN-T) began back in 1994 with seven working groups. They produced an R&D and policy framework
  • Future-proofing transportation with a one-stop optical network solution
    July 20, 2021
    Huawei is helping transportation customers leverage optical transmission networks to optimise their communications and ensure business survival in the fast-changing worlds of road, rail, aviation, maritime and logistics
  • Electriq Global to launch water-based fuel in the Netherlands
    February 21, 2019
    Australian-Israeli company Electriq Global has partnered with Dutch firm Eleqtec to bring its water-based fuel to the Netherlands to power electric mobility solutions. Electriq Fuel is expected to be suitable for mobility applications for trucks, barges and mobile generators. Electriq says it is is comprised of 60% water and achieves a greater range and lower cost than green energy solutions like lithium-ion batteries or compressed hydrogen. The energy density potential of the technology is up t