Uap offers a modular atmospheric gas separation platform that extracts noble gases, CO₂, and other target components directly from ambient air at the point of use. Using proprietary low‑energy technology, the plug‑and‑play units deliver high‑purity gases on‑site, reducing transport costs and emissions while providing scalable, real‑time controlled solutions for manufacturers, chemical producers, and carbon‑capture facilities.
Funding
Funding not disclosed
Founders
Product
Problem
Industrial processes often rely on centralized, energy‑intensive plants to separate and purify atmospheric gases, leading to high operational costs, large carbon footprints, and limited flexibility for on‑site material needs.
Solution
Uap provides a modular atmospheric gas separation platform that captures valuable gases such as noble gases and CO₂ directly from ambient air at the point of use. The system uses a proprietary separation technology that reduces energy consumption compared with traditional cryogenic or chemical methods. Its plug‑and‑play design allows rapid deployment across a range of industrial settings, enabling companies to obtain pure gases on‑site while lowering transport and emissions. The platform can be scaled or reconfigured to match changing production volumes or to support emerging applications, creating a flexible infrastructure layer for sustainable gas supply.
Target Audience
Primary customers are manufacturers, chemical producers, and carbon‑capture facilities that require on‑site supply of high‑purity gases for production or emissions reduction.
Features
- Proprietary separation technology optimized for low‑energy extraction of noble gases, CO₂, and other target components
- Modular, containerized units that can be combined or resized to meet specific production capacities
- On‑site capture eliminates the need for bulk gas transport and associated logistics costs
- Real‑time monitoring and control interface for automated operation and performance optimization
- Designed for integration with existing industrial processes and can be customized for diverse applications