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Hydrogen's Role in the Energy Transition

The hydrogen economy is growing and will play an important role in the energy transition and achieving net-zero targets. While traditionally used in refining and chemical production, hydrogen is now poised for use in energy storage, power generation, transportation, heating, and the decarbonization of heavy industry. The Metharc wellbore methane reformation process drives down the cost of producing low-carbon (Blue) hydrogen close to, or below, the cost of Grey hydrogen. This will accelerate the supply and increase the volumes of low-carbon hydrogen and maximize the value of methane reserves that risk becoming economically stranded due to climate regulations.

 

Explore our hydrogen topics below to learn more.

Hydrogen's Role in the Energy Transition

The hydrogen economy is growing and will play an important role in the energy transition and achieving net-zero targets. While traditionally used in refining and chemical production, hydrogen is now poised for use in energy storage, power generation, transportation, heating, and the decarbonization of heavy industry. The Metharc wellbore methane reformation process drives down the cost of producing low-carbon (Blue) hydrogen close to, or below, the cost of Grey hydrogen. This will accelerate the supply and increase the volumes of low-carbon hydrogen and maximize the value of methane reserves that risk becoming economically stranded due to climate regulations.

 

Explore our hydrogen topics below to learn more.

01

How Do We Achieve Clean Energy

The global energy transition needs a new approach. How can we leverage existing oil and gas assets in a climate-beneficial way to meet energy demands while achieving climate goals? This requires reducing the cost of low-carbon hydrogen and CCS, improving the economics of existing infrastructure, and keeping methane and CO2 emissions underground. Learn how we can make CCS sustainable and drive a thriving hydrogen economy.

02

The Energy Transition

To achieve net-zero goals, we must transition to greener energy sources and optimize the use of existing oil and gas resources. Transforming these resources into clean hydrogen at the source offers a climate-beneficial solution for maintaining energy security. This approach allows for continued access to strategic energy reserves while significantly increasing hydrogen supply and accelerating the transition to a hydrogen economy.

03

Hydrogen as Energy Carrier

While hydrogen boasts a higher energy density per kilogram than gasoline, it’s the opposite when measured by volume. This means hydrogen packs more energy per unit of weight, but less per unit of space compared to traditional fuels. Understanding this difference is crucial when considering hydrogen’s role in the energy transition.

04

Transitioning Industry

The oil and gas industry possesses valuable expertise applicable to the geothermal sector, ensuring a smooth transition for workers and continued economic contributions. Converting oil and gas fields to hydrogen production maintains energy security while generating new revenue streams from carbon taxes, carbon credits, and hydrogen sales. This approach supports a sustainable energy future and strengthens the national economy.

05

Eliminating Oil and Gas Production

Discarding existing oil and gas reserves poses significant challenges for the global energy transition. A recent study highlights the potential mismatch between climate ambitions and the resources required to achieve them. Optimizing the use of these reserves for hydrogen production and leveraging existing infrastructure can help bridge the gap while minimizing reliance on rare earth metals. This approach ensures energy security and supports a responsible transition to greener technologies.

06

The Electric Power Grid

Adapting and repurposing existing energy infrastructure is crucial for meeting future needs sustainably. Utilizing hydrogen for power generation and transportation, alongside enhanced geothermal energy for heating, can decentralize energy production, reduce transmission losses, and minimize the need for new infrastructure. This approach optimizes existing resources and ensures energy security while transitioning to a greener future.

07

Hydrogen as a Water Source

Hydrogen power offers a decentralized and sustainable solution to growing energy and water needs. By generating both power and fresh water, hydrogen plants reduce reliance on desalination and conserve precious resources. This approach supports economic development, enhances water security, and contributes to achieving multiple UN Sustainable Development Goals.

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