Pioneering industry collaboration accelerates hydrogen refuelling innovation for HGVs

Hy-Met Limited is poised to revolutionise the way in which vehicles can be sustainably and cost-effectively fuelled with hydrogen. 

The Midlands-based SME will work in partnership with Logan Energy and WMG, University of Warwick to deliver the Hydrogen Prototype Equipment for Refuelling (HyPER) project. 

Together, the consortium will develop a next-generation hydrogen flowmeter for refuelling Heavy Goods Vehicles (HGVs). These will be used for hydrogen refuelling systems, and will be lightweight, smaller, more cost effective and more accurate than existing instruments. 

This follows recent funding from the UK Government’s Department of Transport zero emission road freight trials through Innovate UK. The project value totals around £170,000.

The new meter will also be easier to manufacture and maintain than current options on the market. 

The project aims to reduce the cost of hydrogen refuelling and enable the wider adoption of hydrogen by transport fleets and other users. 

Hy-Met is focused on addressing key challenges faced by the transition to a sustainable energy system. With over 30 years of experience in ultrasonic flow measurement and device design, Hy-Met needed additional skills and knowledge in advanced manufacturing and hydrogen refuelling to combine with their own to tackle the challenge of efficiently and accurately refuelling hydrogen fuelled HGVs.

Nishal Ramadas, co-founder and CEO of Hy-Met, said:

“Since launching Hy-Met in January, we’ve been motoring ahead with our plans to help with the transition to net zero. With our innovative measurement platform, Hy-Met is combining our deep hardware and software expertise to tackle some of the complex measurement challenges facing the hydrogen sector. 

“When building the consortium, we knew we needed partners with detailed knowledge of the requirements for hydrogen refuelling and advanced manufacturing and prototyping capabilities. 

“Our choice of project partners was clear and we are very happy Logan Energy and WMG have joined us in tackling this refuelling challenge.”

Wallyford-based Logan Energy design, install, commission and maintain Integrated Energy Systems across the UK and Europe. Logan Energy was founded in 2005 and has worked on schemes including hydrogen refuelling stations in Edinburgh and Belfast, hydrogen ferries for Orkney, lower-carbon whisky distilleries for Benbecula and Arbikie, and the Levenmouth Community Energy Project.

Bill Ireland, Chief Executive at Logan Energy, said: 

“Using hydrogen to power lorries is one of the key steps towards helping Scotland and the UK tackle the climate emergency.

“Making the switch from burning diesel to using hydrogen will cut the amount of carbon dioxide and other harmful gases being pumped into the atmosphere.

“There are a number of advancements we need to take before hydrogen becomes commonplace on our roads and one of the crucial elements is making it cheap and easy to refuel.

“For nearly three decades Logan Energy has been at the forefront of developing new and innovative hydrogen technologies both here in the UK and abroad. This collaborative partnership with Hy-Met and WMG is another step towards helping the UK grow its capabilities within the hydrogen industry and the drive to net-zero.”

WMG at the University of Warwick is an international leader in collaboration between academia and the private and public sectors, driving innovation in applied science, technology and engineering. The advanced additive manufacturing expertise and capability within WMG was well aligned to the demands of the HyPER project. 

Dmitry Isakov, Assistant Professor at WMG, University of Warwick, said:

“Securing this funding from the Department of Transport through Innovate UK will help us to accelerate our work. Working alongside Logan Energy and Hy-Met will allow us all to combine our knowledge and expertise to develop an industry-leading hydrogen flowmeter.”


For more information on Logan Energy, please contact :: Steven Herd :: 07791878940 ::

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Notes to Editors 

About Logan Energy 

Logan Energy has extensive experience and a proven track record in delivering projects and solutions in the hydrogen and clean energy sectors. It specialises in integrated engineering solutions incorporating hydrogen technologies, including production, refuelling, storage, distribution, and fuel cells. It offers a full turnkey service from project inception and feasibility, design development, manufacturing, installation, and operation and maintenance. 

Logan Energy has built up over twenty-six years of expertise in hydrogen and fuel cell technologies. To date, it has designed, built, and installed hydrogen production & refuelling stations for the UK & European markets and is currently constructing further stations for buses, vans, passenger vehicles, and heavy-duty vehicles. It has also installed, commissioned, and maintained over 1MWe of fuel cells providing heat, power, and cooling in landmark buildings in the UK. 

Logan Energy continues to provide independent advice and expertise to a wide range of blue-chip clients.

About WMG, University of Warwick

WMG is a world leading research and education group, transforming organisations and driving innovation through a unique combination of collaborative research and development, and pioneering education programmes. 

As an international role model for successful partnerships between academia and the private and public sectors, WMG develops advancements nationally and globally, in applied science, technology and engineering, to deliver real impact to economic growth, society and the environment.

WMG’s education programmes focus on lifelong learning of the brightest talent, from the WMG Academies for Young Engineers, degree apprenticeships, undergraduate and postgraduate, through to professional programmes. 

An academic department of the University of Warwick, and a centre for the HVM Catapult, WMG was founded by the late Professor Lord Kumar Bhattacharyya in 1980 to help reinvigorate UK manufacturing and improve competitiveness through innovation and skills development.

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