Companies are making pledges to consume, supply or support hydrogen with the lowest possible carbon intensity.
Join those influential companies to increase market confidence in the growth of decarbonized hydrogen.
Together we already achieve 25% of the decarbonization potential* with hydrogen by 2030.
Together we already achieve 25% of the decarbonization potential* with hydrogen by 2030
*as estimated by the Hydrogen Council8 Rivers Capital
8 Rivers Capital pledges to develop and commercialise a novel ultra-low carbon hydrogen process technology capable of delivering clean, industrial scale hydrogen at a price that will enable the displacement of natural gas, and further drive the deployment of at least 435 ktpa (kilo tons per annum) of ultra-low carbon hydrogen by 2030.
Acciona Energía
At ACCIONA Energía we are committed to the creation of a robust renewable hydrogen ecosystem to meet decarbonization targets in an environment of economic growth. To this end, ACCIONA Energía has teamed up with Plug Power, establishing the joint venture ACCIONAPLUG in 2021 which targets to capture 20% of the Iberian renewable hydrogen market by 2030, currently estimated at 1,2 GW of electrolysis capacity. ACCIONAPLUG´s first 25 MW electrolysis facility will initiate renewable hydrogen production by the end of 2024 in Navarra, Spain.
The JV is developing several additional projects, replicable and scalable to hundreds of MW of electrolysis capacity in the next years. Beyond this joint venture, ACCIONA Energía is progressing with the development of pilot projects following the lead of Power to Green Hydrogen Mallorca in countries with great potential for the production of renewable hydrogen, such as Chile, with a project in Quintero Bay that has already received a grant, and Australia. Additionally, ACCIONA, ACCIONA Energía and Nordex have created a JV to develop renewable hydrogen projects in areas with abundant wind resources, not connected to conventional power grids, where hydrogen can be produced at competitive costs. With a target renewable energy development portfolio of 50 GW, the JV already has sites in the US, Latin America and Africa.
The JV's plan is to develop projects that will produce 0.5 million tons of renewable hydrogen annually within the next ten years. The first would be ready-to-build by 2027. Each of the projects, with minimum size of 1 GW of installed renewable capacity, will be deployed through strategic agreements with other companies and public and private institutions.
Anglo American
We are currently in the process of engineering world-class low carbon hydrogen technologies. In May 2022, we unveiled a prototype of the world’s largest hydrogen-powered ultra-class mine haul truck designed to operate in everyday mining conditions at our Mogalakwena Platinum Group Metals mine in South Africa. The 2MW hydrogen-battery hybrid truck, generating more power than its diesel predecessor, is capable of carrying a 290-tonne payload and now forms part of the “First Mode” Zero Emission Haulage Solution (ZEHS).
In December 2022, we announced our investment in First Mode Holding Inc (“First Mode”), a specialist engineering technology company that we have partnered with to decarbonise our global fleet of ultra-class mine haul trucks. The $200 million capital investment transaction was officially completed in January 2023, which results in Anglo American being a majority shareholder in First Mode.
We pledge that by 2030 we will convert all our diesel-powered ultra-class mine haul trucks at these sites to low carbon hydrogen power, as well as to stimulate a wide range of hydrogen associated industries and opportunities within our host communities.
By 2030 bp aims to participate in:
To support CLP’s Climate Vision 2050, we are committed to provide a net-zero electricity supply to our customers by that date. As part of this commitment, we expect to transition our natural gas generation units to run on ‘low carbon hydrogen’ during the 2030s and 2040s. To do so, we will need not only Government support but the market to provide us with an average of around 550ktpa of ‘low carbon hydrogen’, delivered to our generation plants at a cost competitive to other alternatives which in today’s prices would equate to less than US$2 per kg. This pledge is therefore both a clear commitment to increase the use of hydrogen as a zero-carbon fuel in generation but also a challenge to potential producers to develop additional capacity at scale and commercially attractive prices, to help us underpin our world class electricity supply reliability over the long term.
As part of our commitment to Net Zero by 2045 across all scopes, Engie targets to develop 4GW of renewable hydrogen production by 2030, to deliver low or ultra-low carbon hydrogen under the WBCSD framework definition. As of today, and pending customer’s final decision and grants, our committed volumes represent already 6kt of renewable hydrogen per year.
Supply
By 2030, ERM intends to enable the production of 45ktpa (500MW) of ultra-low carbon hydrogen through ERM Dolphyn and other projects, reaching a minimum of 360ktpa (4GW) by 2035.
Support
As the size of the low carbon Hydrogen market grows significantly through to 2030, ERM will be materially involved in this market supporting leading companies in moving towards low carbon hydrogen solutions and through thought leadership and active collaboration in developing methodologies, safety standards and insights.
Supply
Fortescue will target the production of 15 million tonnes per annum of green hydrogen by 2030. Fortescue’s vision is to make renewable green hydrogen the most globally traded seaborne energy commodity in the world.
Support
Fortescue will allocate 10 percent of Net Profit After Tax to fund renewable energy growth through Fortescue Future Industries to drive the acceleration of Green Hydrogen projects around the globe.
In its mission to lead the energy transition, Iberdrola is spearheading the development of green hydrogen and its derivatives with two real projects already built in Spain: the largest green hydrogen plant in Europe today, our 20 MW Puertollano plant for fertilisers and potentially for other industrial uses and heavy mobility, and our 2.5 MW green hydrogen refuelling station for buses in Barcelona.
Overall, the Group currently has over 60 projects under different phases of development in eight countries (Spain, the United Kingdom, Australia, Brazil and the United States, among others) to meet the demand for electrification and decarbonisation in hard-to-abate sectors. Iberdrola is addressing the technological challenge of producing and supplying green hydrogen and derivatives, such as green ammonia, e-methanol or green steel, from clean energy sources, powering the electrolytic process with 100% renewable electricity. Iberdrola has the ambition to reach 3 GW of electrolysers installed capacity worldwide by 2030.
Octopus Hydrogen
Octopus Hydrogen produces ultra-low carbon hydrogen using electrolysis powered entirely by renewable energy. By 2030 Octopus Hydrogen aims to own and operate an installed capacity of 1 GW of electrolyzers. This is roughly 200 tonnes of green hydrogen production daily spread globally. We are focused on delivering renewable hydrogen to sectors that cannot be decarbonized easily through electrification, such as replacing grey hydrogen and heavy goods transportation.
Riversimple is making the world's most sustainable vehicles and will need green hydrogen to achieve its mission of eliminating the environmental impact of personal transport. Riversimple will be mass producing a local car, a commercial van and a family car that will be affordable and convenient. The vehicles are offered on an all-in subscription basis which includes the fuel and so the company are the wholesale purchasers of the Hydrogen. By 2030 the total cumulative consumption by the fleet is predicted to be 10kt of hydrogen of which a minimum of 90% will be from zero-carbon renewable sources. By 2040, Riversimple will be running a fleet of 250k vehicles in the UK with an annual hydrogen demand of 27kt per annum 100% of which will originate from zero carbon renewable sources.
Shell
Demand
Shell pledges that by 2030, at least 65% of the hydrogen consumption in its Chemicals and Energy parks will be Reduced Carbon or better (~300ktpa, excluding co-produced hydrogen).
Supply
Shell pledges to produce 75ktpa of Ultra Low Carbon Hydrogen and 100ktpa of Reduced Carbon Hydrogen by 2030.
Since its initial supply pledge, Shell has taken a final investment decision for Holland Hydrogen I, which will be Europe’s largest renewable hydrogen plant once operational in 2025. The 200MW electrolyzer will be constructed on the Tweede Maasvlakte in the port of Rotterdam and will produce up to 60,000 kilograms of renewable hydrogen per day.
Yosemite Clean Energy, and our subsidiary companies under the Yosemite umbrella, are committed to providing our first portfolio of carbon negative renewable hydrogen from waste biomass (carbon intensity score ranging from -56 to -25) that will be produced at three production facilities. The sites are currently under development in California and slated for production beginning in 2026 for the first plant, with goals of opening plants #2 and #3 by 2027.
We commit to completing our first portfolio of 3 hydrogen projects, with an estimated completion date of 2027. The first portfolio will reduce GHGs by eliminating an estimated 402k metric tonnes CO2e per year and will reduce the use of Diesel fuels by an approximate 19.5 million diesel gallon equivalents annually.
Each of our projects will produce an estimated 24 MT of SJ2719 fuel cell grade hydrogen daily: therefore 3 plants will produce an estimated 21 ktpa of hydrogen. These figures would support public transportation by supplying an approximate 1,400 heavy duty class 8 trucks on an annual basis, or an approximate 2,400 buses.
ARCADIS
Arcadis is a leading international consultancy with sustainability at the core of everything we do. Arcadis pledges to support the simultaneous growth of supply and demand of the hydrogen industry, deploying hydrogen with the lowest possible carbon intensity to decarbonize all sectors.
We will lead the Energy Transition and contribute to achieving carbon neutrality by helping our clients implement carbon reduction solutions through renewable energy and zero carbon technologies
Cummins' next-generation environmental sustainability strategy looks out to 2050, setting quantifiable goals for 2030 along with visionary longer-term aspirations to 2050. As a global hydrogen technology supplier, Cummins pledges to support the growth of clean hydrogen by scaling up our electrolyzer production capacity to 2GW by 2030 to enable green hydrogen production. Additionally, Cummins pledges to ramp up production capacity to produce fuel cell power modules and components to meet market demand and will continue to invest in research and development to develop new hydrogen products.
Deloitte is committed to taking action on climate change, empowering Deloitte people and engaging the broader ecosystem to create solutions that help facilitate the transition to a low-carbon economy. Deloitte will collaborate with businesses organizations and form strategic alliances to help:
DNV
DNV is committed to accelerate deployment of hydrogen with the lowest possible carbon intensity through its independent technical expertise, for example, by verifying the carbon intensity and impacts of hydrogen projects using science-based principles for a fast and safe energy transition.
Hinicio, project leader of CertifHy™, is rapidly progressing toward its ambition of becoming a major pure player in the field of hydrogen and e-fuels certification. On the 1st of March 2023, CertifHy™ submitted its RFNBO EU Voluntary Scheme documents for approval by the European Commission in Q4 2023. By seeking this approval, CertifHy™ aims to translate the EU legislative framework on Renewable Fuels of Non-Biological Origin (RFNBO) and enable the uptake of clean hydrogen and synthetic renewable fuels in the transport sector. Hinicio is looking forward to continuing to work closely with its partners, clients, and stakeholders to fasten the implementation of a clean hydrogen economy and maximize the role of hydrogen in the energy transition.
Johnson Matthey has been a leader in hydrogen technology for decades, and our experience cuts across numerous parts of the hydrogen value chain, including market leading hydrogen production catalysts and processes, components for hydrogen fuel cells and new technologies for ultra-low carbon hydrogen production.
JM is putting its science and experience at the heart of solutions that support a cost-effective transition to a secure and environmentally sustainable energy system. By 2030, Johnson Matthey pledges to invest c.£1bn in the research, development, and deployment of clean hydrogen technologies.
Linde has set a sustainable development target of reducing its GHG intensity 35% by 2028 and to achieve a 35% reduction in our Scope 1 and Scope 2 emissions by 2035 - 35 by 35.
Linde is also committed to pursuing our goal of becoming climate-neutral by 2050.
To support Linde’s climate change commitment, the company plans to triple the amount of clean hydrogen produced. It will pursue competitive low-carbon sources of hydrogen, including energy efficient steam methane reformers with carbon capture, electrolysis with renewable power and piloting new low-carbon technologies.
Octopus Hydrogen
Octopus Hydrogen will develop and bring to market our software for electrolysis optimization. Our aim is for 25 GW of electrolysis globally to be using Octopus Hydrogen’s technology platform by 2030.
Port of Rotterdam
The port of Rotterdam is committed to supply Northwestern Europe with 4.6 million tonnes of hydrogen with the lowest possible carbon intensity annually by 2030. This is based on specific projects and realistic plans, which companies and exporting countries are actively working on. The port of Rotterdam aims to be Europe’s Hydrogen Hub: an international hub for hydrogen production, import, application and transport to other countries in Northwest Europe
As part of our Euro 1Bn research and development budget, Siemens Energy pledge to commit to developing products, services, and solutions to help limit climate change caused by the global increase in CO2 emissions. We will find through innovation and technology, solutions which lead to carbon neutral power generation through having H2 ready Gas Turbines by 2030, and a portfolio of Electrolysers, Renewable Energy Sources and other technologies that will enable the transition to green energy.
As an infrastructure operator, SNAM commits to initiate the repurposing of its assets to pure H2 within the next decade, unlocking H2 potential to reach 20-25% of energy demand in 2050 through access to cheap renewable power. In addition, in line with its Net Zero Carbon by 2040 Strategy, SNAM pledges to achieve a 28% reduction of Direct and Indirect energy emissions (Scope 1 and 2) emissions by 2025 compared to 2018 values and a 50% reduction by 2030.
TOPSOE
Topsoe pledges to build a manufacturing facility producing highly efficient Solid Oxide Electrolyzer Cell (SOEC) electrolyzers with an initial total capacity of 500 MW per year by 2025. This would be a first-of-its-kind plant and the largest SOEC production in the world. As SOEC consumes less electricity than conventional electrolysis, the technology represents a key pathway for large-scale production of ultra-low carbon renewable hydrogen.
Trane Technologies commits to pursuing all clean energy solutions, including those based on low-carbon hydrogen, as we endeavor to meet our 2030 Gigaton Challenge, science-based scope 1, 2, and 3 goals, and carbon neutrality targets. To support our 2030 goals and advance the deployment of low-carbon hydrogen, we will incorporate these solutions into business and manufacturing strategy while working with upstream partners to support the implementation of clean hydrogen across our entire value chain.
University of Birmingham
The University of Birmingham is working with industry partners to considerably reduce carbon emissions from hydrogen production, including negative emissions based on biomass, through the development of new materials and processes, and through our education and training offering in this space.
Yokogawa, as a leading industrial automation company, is committed to supporting the deployment of energy such as hydrogen with the lowest possible carbon intensity.
We currently supply automation systems to one of the world’s largest green hydrogen production plants in Japan.
We will contribute to achieving carbon neutrality by helping our customers to measure and control 1 billion t CO2 emissions by 2030 (accumulative from FY18), with 50% or more of that achieved from renewable energy and new technologies.
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