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Resollant

Resollant develops reactor technology for large-scale industrial carbon capture and conversion. This technology enables economical production of hydrogen and syngas while generating monetizable solid carbon byproducts. The platform also facilitates the creation of net-negative carbon emission biofuels for transportation fuels.

The Woodlands, United States210+ followers
Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

The production of hydrogen and syngas, essential for various industrial processes, often results in significant carbon dioxide emissions, contributing to climate change. Traditional carbon capture and storage (CCS) methods can be expensive and complex, impacting the economic viability of clean hydrogen production.

Solution

Resollant offers a reactor technology that produces hydrogen or syngas with zero CO2 emissions by capturing carbon as a valuable solid material. This approach eliminates the need for costly and complex carbon capture and storage (CCS) infrastructure typically associated with steam methane reforming. The technology reduces balance-of-plant requirements and enhances the economic feasibility of clean hydrogen and syngas production by creating a monetizable solid carbon byproduct. The reactor can also process biogas into biofuels with high cold gas efficiencies.

Target Audience

Resollant targets industrial companies requiring large-scale hydrogen or syngas production, biofuel producers, and businesses seeking to reduce their carbon footprint.

Features

  • Advanced reactor design for direct carbon capture as a solid during hydrogen and syngas production
  • High cold gas efficiency for biogas-to-biofuel conversion
  • Production of monetizable solid carbon byproduct, increasing plant revenue
  • Reduced balance-of-plant requirements compared to steam methane reforming with CCS
  • Capability to produce hydrogen, syngas, and biofuels from a single reactor
This profile is AI-generated and may contain inaccuracies.