Access reliable, cost-effective decarbonized power. Modern Hydrogen’s technology enables clean hydrogen production onsite while leveraging existing natural gas infrastructure.
Meet Demand With Firm, Scalable, Clean Energy Solutions Without Compromising Reliability or Compatibility
Unmatched
Reliability
Ensure clean, firm power when and where it is needed.
Flexibility for Baseload & Peak Power
Modern Hydrogen’s natural gas pyrolysis technology adapts flexibly as a primary or supplemental energy source.
Scalable to
Your Facility
From small-scale facilities to multi-megawatt plants, Modern Hydrogen scales to match power requirements with ease.
Grid
Independence
Onsite hydrogen generation reduces dependence on overburdened electrical grids, offering a resilient alternative for energy delivery.
Reliable, At-Scale Solutions to Decarbonize Utilizing Existing Infrastructure
With Modern Hydrogen tech, your facility can generate its own hydrogen directly from your natural gas supply.
Gain a consistent, cost-effective source of decarbonized natural gas, reducing reliance on volatile market pricing, and reducing logistical transportation risks while meeting your decarbonization goals with ease.
We capture carbon from methane sources that would otherwise become CO₂ emissions.
Distributed Pyrolysis
Our natural gas pyrolysis technology breaks down methane into hydrogen gas and solid carbon before combustion.
Usable Hydrogen
Hydrogen is available to be used for onsite heat, power, or feedstock. The solid Modern Carbon is removed to be sequestered in asphalt applications.
Hydrogen Costs Are Volatile — Unless You Generate Your Own Hydrogen from Your Reliable Natural Gas Utility
Modern Hydrogen empowers you to generate your own hydrogen directly from your natural gas supply. By leveraging distributed pyrolysis technology, you gain a consistent, cost-effective source of decarbonized natural gas, reducing reliance on volatile market pricing, and reducing logistical transportation risks while meeting your decarbonization goals with ease.