The startup develops catalytic methanation reactors that utilize dielectric barrier discharge to convert gaseous reactants into gaseous or liquid products. This technology enhances the efficiency of biogas and pyrolysis processes, enabling industries to optimize their production and reduce operational costs.
Funding
$23.6M 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.

GTFounders
Product
Problem
Many industries face challenges in efficiently converting waste gases, such as biogas and those from pyrolysis processes, into valuable products like methane, hydrogen, methanol, and sustainable aviation fuels. Existing technologies often struggle with high costs, sensitivity to pollutants, and limitations in decentralized applications. This hinders the widespread adoption of circular economy practices and decarbonization efforts.
Solution
Energo provides innovative plasma catalysis technology to convert gases into valuable molecules. Their catalytic methanation reactors utilize dielectric barrier discharge to enhance the efficiency of biogas and pyrolysis processes. This technology offers a compact and robust solution for converting gases into methane, hydrogen, methanol, syngas, e-fuels and sustainable aviation fuels. Energo's solution is designed for both massive production and decentralized applications, enabling industries to optimize production, reduce operational costs, and promote circular economy practices. The technology's high resistance to pollutants ensures stable and reliable performance in diverse industrial settings.
Target Audience
Energo's primary customers include industries involved in biogas production, pyrolysis processes, waste gas management, and the production of sustainable fuels and chemicals, ranging from small to big CO₂ emitters.
Features
- Plasma catalysis technology based on Chimie Paris tech research
- Dielectric barrier discharge reactors for efficient gas conversion
- Low CAPEX and OPEX compared to traditional methods
- Compact and modular design for easy integration
- High resistance to pollutants, ensuring stable operation
- Suitable for methanation, dry reforming of methane, and methanolation
- Ability to produce methane, hydrogen, methanol, syngas, e-fuels and sustainable aviation fuels