INNOVATING TOMORROW’S CLEAN ENERGY SOLUTIONS TODAY
With energy consumption surging amid the global vision of a net-zero carbon economy, advances in sustainable energy solutions are critically needed by 2050. In particular, those which offer both operational and distribution efficiencies. The challenges of transitioning to these environmentally-friendly energy sources include the need for substantial investment in new technologies and infrastructure, and navigating complex supply chains. That’s why manufacturers worldwide are investing more and more in the hydrogen economy. Hydrogen technology is increasingly becoming a globally accepted, critical enabler to energy transition and decarbonization.
Green hydrogen is a versatile new energy carrier because unlike fossil fuels it generates zero CO2 emissions. Hydrogen helps major hard-to-abate sectors like heavy industry (e.g., oil refining, steelmaking, fertilizer production) and long-haul transportation (e.g., trucks and ships) to decarbonize without compromising their operations.
Gore enables manufacturers to embrace sustainability without compromise. By leveraging our composite reinforced proton exchange membranes (PEM), manufacturers can efficiently commercialize and scale advanced clean energy solutions in an economically attractive and risk-reduced way.
Clean Energy Products
COMMERCIAL CLEAN ENERGY SOLUTIONS USING HYDROGEN TECHNOLOGY
Clean energy technologies that leverage hydrogen provide a versatile and scalable approach to production, storage, and utilization. In addressing the challenges of transitioning to hydrogen technology, the use of PEM membranes emerges as a pivotal solution, offering distinct efficient and flexible advantages. These advantages contribute to a seamless integration of this clean and sustainable energy solution.
As a PEM membrane manufacturer, Gore leads the global PEM market with nearly three decades of proven innovation. We understand the importance of creating alternative solutions to the way we power our world and are committed to helping make large-scale clean hydrogen a reality for the future.
To be truly competitive against conventional power hydrogen fuel cell technology must be more accessible, in greater volume, and at lower cost.
And that’s precisely our mission.
Through unparalleled market and technical know-how, Gore collaborates closely to help ensure seamless integration, volume ramp up, and optimized performance for your energy solutions.
Engineering Expertise & Technical Support
Cost Optimization & System Efficiencies
High-Performing, Durable Products
Reliable Supply Chain Security
APPLICATIONS FOR PEM MEMBRANES
Hydrogen Production
As manufacturers race towards transitioning to advances in clean energy technologies, in particular hydrogen, their success hinges on scaling up electrolysis systems to meet commercial demand. Water electrolysis has the potential to revolutionize the way we utilize, produce and distribute clean energy. However, electrolysis can be costly due to the high electricity demand. To overcome this challenge, manufacturers must develop efficient, reliable and scalable water electrolysis solutions that leverage durable, high-performance components to enable lower operating costs.
Partnering with Gore brings end-to-end benefits for electrolyzer manufacturers:
>25+ years
of world-leading fuel cell and electrochemical expertise
Multi-gigawatt
global production capacity with multiple production lines
Market-leading
PEM performance and durability
Proven
supply security, process stability and consistent quality
Strategic partnerships
for critical raw materials with priority access
Hydrogen Demand
PEM hydrogen fuel cells are an increasingly viable and cost-effective solution for achieving zero-emissions in multiple applications — but lowering total cost of ownership (TCO) even further is essential for wide-scale adoption.
Backed by nearly 30 years’ experience as a global PEM supplier, our industry-leading thin, high proton-conductive and durable fuel cells enable large-scale fuel cell technology commercialization. Our unique TCO reduction approach applies to multiple major industries.
How do our advanced fuel cell membranes reduce TCO?
A higher manufacturing output of high-quality products, reducing failure risk
High proton conductance that increases fuel efficiency and enables smaller stacks with greater design flexibility.
Higher chemical-mechanical durability that extends the fuel cell system lifetime
Reliable performance that decreases OPEX by lowering maintenance and replacement costs
A proven high-volume supply chain and world-class R&D and testing facilities to minimize risk
HYDROGEN INSIGHTS
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Gore Alternative Energy & Storage