enaDyne develops non-thermal plasma catalysis reactors that convert CO2 into sustainable chemicals and eFuels, providing a method for recycling greenhouse gas emissions. This technology enables industries to produce climate-neutral alternatives to fossil-based chemicals at competitive costs, facilitating the transition to a circular economy.
Funding
$20K 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.

CTFounders
Product
Problem
The production of basic chemicals like ethylene and methanol relies heavily on fossil fuels, contributing significantly to greenhouse gas emissions. Existing CO2 utilization technologies often suffer from high energy consumption and limited economic viability, hindering widespread adoption in industrial settings. This dependence on fossil resources poses a challenge for industries aiming to reduce their carbon footprint and transition to sustainable practices.
Solution
enaDyne provides a plasma catalysis technology that converts CO2 into valuable chemicals and eFuels, offering a sustainable alternative to fossil-based production. Their non-thermal plasma reactors utilize CO2 as a feedstock, transforming it into climate-neutral resources with high efficiency. This technology enables industries to defossilize their chemical production processes, reducing reliance on traditional fossil fuels. The enaDyne solution can be integrated into various industrial applications, from upgrading raw biogas to producing chemical energy storage and transport media, offering a flexible drop-in solution for both centralized and decentralized operations. By converting CO2 into profitable resources, enaDyne aims to make the climate transition economically attractive for businesses.
Target Audience
The primary target audience includes companies in the chemical, energy, and biogas industries seeking to reduce their carbon emissions and produce sustainable alternatives to fossil-based products.
Features
- Non-thermal plasma catalysis reactors for CO2 conversion.
- Production of sustainable chemicals and eFuels, including ethylene and methanol.
- Drop-in solution adaptable to various industrial applications.
- High CO2 conversion efficiency using cold plasma and advanced material technology.
- Potential for CO2-negative products when using CO2 from biogas plants or direct air capture (DAC).
- Modular system design allowing for flexible deployment and scalability.