The startup develops carbon conversion technology that transforms carbon dioxide emissions into silica nanopowder through a chemical process. This technology addresses the challenge of greenhouse gas emissions by providing a sustainable material solution for various industrial applications.
Funding
$3.3M 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
Industrial processes release significant amounts of carbon dioxide (CO2), a major contributor to greenhouse gas emissions and climate change. Traditional manufacturing of materials like silica, alumina, and glass is energy-intensive and generates further CO2 emissions. This reliance on carbon-heavy processes necessitates innovative approaches to mitigate environmental impact and promote sustainability.
Solution
Barton Blakeley Technologies addresses this challenge with its HYPER Xi technology, a carbon conversion system that transforms waste CO2 emissions into valuable industrial materials. This process permanently captures and destroys carbon emissions, converting them into materials like silica nanopowder and lead-free glass. The resulting materials can be used in a wide range of applications, including coatings, rubbers, adhesives, touchscreens, glass, electronics, cosmetics, and pharmaceuticals, offering a sustainable alternative to traditional, carbon-intensive manufacturing methods. Furthermore, the carbon conversion process can generate hydrogen gas as a byproduct, providing a clean energy source.
Target Audience
The primary target audience includes manufacturers in industries such as coatings, rubbers, adhesives, touchscreens, glass, electronics, cosmetics, and pharmaceuticals seeking sustainable and low-carbon material alternatives.
Features
- HYPER Xi carbon conversion system that transforms CO2 emissions into industrial materials.
- Production of silica nanopowder with customizable properties, including hydrophobicity, thermal resistance, and UV resistance.
- Manufacturing of lead-free glass with high optical qualities and clarity.
- Hydrogen gas production as a byproduct of the carbon conversion process.
- Capability to customize nanopowders for specific industry requirements.
- Low-energy carbon conversion process.
- Turnkey carbon capture and conversion system with a small footprint (2m2).