<name>CO2L Tech</name> <description>CO2L Tech develops electrochemical CO₂ reduction systems that convert captured CO₂ from emission sources into industrial chemicals such as ethylene, syngas, and formic acid. The technology offers high conversion rates, product selectivity, and can be integrated into existing infrastructure without major modifications. By turning carbon emissions into valuable feedstocks, it supports circular‑econom
Funding
$70K 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 increasing levels of atmospheric carbon dioxide (CO2) are driving climate change, leading to extreme weather events, public health issues, and food insecurity. Current methods of reducing emissions, such as carbon capture and sequestration, can be costly and may not fully address the need to remove existing CO2 from the atmosphere.
Solution
CO2L Tech offers a technology platform that transforms carbon emissions into valuable industrial chemicals through Electrochemical Reduction (ECR). Their electrolytic systems convert CO2 into ethylene, syngas, or formic acid, depending on the catalyst used. The technology can be integrated into CO2 emission sources without major infrastructure modifications, promoting a circular economy by recycling carbon into polymers, fuels, and chemical feedstocks. By transforming waste emissions into economically useful products, CO2L Tech provides a means for businesses to align their net-zero efforts with science-based targets.
Target Audience
The primary target audience includes companies with net-zero commitments, businesses seeking to reduce their carbon footprint, and industries that can utilize chemicals like ethylene, syngas, and formic acid.
Features
- Electrochemical CO2 Reduction (ECR) systems for transforming CO2 into industrial chemicals
- High CO2 reduction rates with high selectivity to products
- Long-term system stability
- Compatibility with pure CO2 gas or CO2 from emission sources
- Production of ethylene, syngas, or formic acid based on catalyst
- Potential to be powered by renewable energy sources like solar or wind