-

H2SITE and Gold Hydrogen have Signed a MoU for the Development of a Natural Hydrogen Pilot Plant on the Yorke Peninsula, South Australia

• Natural hydrogen is a primary source of energy without carbon footprint. It holds great decarbonization potential.

• H2SITE’s technology is an enabler for natural hydrogen projects, able to separate hydrogen streams from helium, nitrogen, CO2.

• H2SITE’s experience working on low concentration hydrogen blends has proven hydrogen recovery efficiencies above 95%.

BILBAO, Spain--(BUSINESS WIRE)--White, natural or geologic hydrogen is naturally produced or present in the Earth’s crust and represents a primary source of energy without carbon footprint. Although it holds great decarbonization potential by significantly reducing current hydrogen costs, the technology still requires development.

Natural hydrogen deposits are being explored in France, US and in Australia, where H2SITE has signed an MoU with Gold Hydrogen for a Pilot Plant in the Yorke Peninsula.

Utilizing H2SITE's advanced membrane separation technology, the plant aims to recover over 95% of the available hydrogen while separating valuable co-products such as Helium.
The collaboration with Gold Hydrogen underscores our shared commitment to the natural hydrogen market growth. H2SITE is thrilled to contribute with its membrane separation technology, enabling sustainable and cost-efficient hydrogen production.” according to Andres Galnares, CEO of H2SITE

The project in the Yorke Peninsula represents a significant step forward in the natural hydrogen space, with one of the first wells showcasing unprecedented levels of H2 concentration.

This collaboration is another step towards accelerating decarbonization and the future use of natural hydrogen as sustainable energy source.

About H2SITE:

H2SITE was established in 2020 and possesses exclusive technology for reactors and separators, facilitating the conversion of various feedstocks into hydrogen. These include ammonia, methanol, or synthetic gas, as well as the separation of hydrogen from gaseous mixtures in low concentrations for applications in salt caverns or natural hydrogen.

Contacts

For more information:
Andrés Galnares, CEO de H2SITE: andres.galnares@h2site.eu

H2SITE



Contacts

For more information:
Andrés Galnares, CEO de H2SITE: andres.galnares@h2site.eu

Social Media Profiles
More News From H2SITE

H2SITE Strengthens Its Leadership With a New Control Room, Developed in Collaboration With Siemens, to Remotely Monitor Membrane Reactor and Separator Technologies for Hydrogen Production Across Europe

BILBAO, Spain--(BUSINESS WIRE)--H2SITE, the deep-tech start-up revolutionizing high-purity hydrogen production through cutting-edge palladium membrane technology, is scaling up its industrial presence with projects deployed across several European countries. To ensure performance and continuous optimization of its membrane reactors and separators, H2SITE has launched a control and data collection room built in collaboration with Siemens, based on the beta version of Siemens WinCC Unified Collab...

H2SITE Secures EIC Accelerator Funding to Deploy a Flagship 1 TPD Ammonia Cracker Using Membrane Reactor Technology at a Port in North-West Europe

BILBAO, Spain--(BUSINESS WIRE)--H2SITE has been awarded the EIC (European Innovation Council) Accelerator program for a project aimed at deploying a first-of-its-kind ammonia cracking unit capable of producing 1 ton of high-purity hydrogen per day. The system is based on H2SITE’s proprietary palladium-based membrane reactor technology, which enables the simultaneous catalytic decomposition of ammonia and selective hydrogen separation within a single unit. This breakthrough technology offers sev...

H2SITE and SNAM Collaborate on an Innovative Hydrogen and Natural Gas Separation Project Promoted by ARERA

BILBAO, Spain--(BUSINESS WIRE)--H2SITE, a leading company in hydrogen separation technology and hydrogen transportation solutions, has announced its collaboration with SNAM, one of Europe’s key energy infrastructure operators, to develop an innovative project focused on the separation of hydrogen and natural gas mixtures. As part of this initiative, H2SITE has designed a Pd-alloy membrane separator, capable of extracting hydrogen from 2% to 10% concentrations. Once built, this unit will represe...
Back to Newsroom