Hydrogen Mem-Tech utilizes patented palladium separators to convert bio- and natural gases into pure hydrogen, facilitating the transition to a low-carbon economy. Their technology addresses the need for efficient hydrogen separation while incorporating carbon capture, enabling scalable production for global businesses.
Funding
$18.5M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.


Founders
Product
Problem
The production of pure hydrogen from bio- and natural gases often faces challenges in efficient and cost-effective separation, hindering the transition to a low-carbon economy. Existing methods may lack scalability and carbon capture capabilities, limiting their applicability for global businesses.
Solution
Hydrogen Mem-Tech utilizes patented palladium membrane technology to selectively separate pure hydrogen from mixed gas streams, such as those derived from bio- and natural gas reforming. The technology offers a compact and scalable solution for on-site hydrogen production, enabling businesses to reduce their carbon footprint. By integrating carbon capture capabilities, the process further contributes to a cleaner energy future. The modular design allows for flexible deployment and adaptation to various feed gas compositions and production requirements.
Target Audience
The primary customers are businesses in the energy, chemical, and industrial sectors seeking efficient and scalable solutions for hydrogen production and carbon capture.
Features
- Patented palladium membrane separators for high-purity hydrogen production
- Compact and modular design for easy installation and scalability
- Integrated carbon capture capabilities for reduced greenhouse gas emissions
- Operates at lower temperatures compared to traditional separation methods, reducing energy consumption
- Suitable for a wide range of feed gases, including bio- and natural gas
- Remote monitoring and control for optimized performance and reduced operational costs