BlueRevo provides a modular on‑site thermochemical conversion system that gasifies biodegradable waste and refuse‑derived fuel into high‑grade syngas for combined heat‑and‑power or hydrogen via methane separation. The platform integrates CO₂ capture and automated process control, enabling manufacturers and waste‑management facilities to replace purchased energy, reduce emissions, and monetize waste streams with minimal operator intervention.
Funding
Funding not disclosed
Founders
Product
Problem
Industrial and commercial operators often rely on external energy suppliers while simultaneously generating biodegradable waste streams that lack cost‑effective valorization pathways. This dual dependency increases operational expenses and limits progress toward circular‑economy goals.
Solution
BlueRevo delivers an on‑site thermochemical conversion platform that gasifies biodegradable waste into high‑grade syngas for heat and power or into hydrogen via methane‑separation processes. The system integrates CO₂ capture to enable carbon‑utilization or sequestration, aligning energy production with emissions‑reduction targets. By converting waste feedstock directly into usable fuel, BlueRevo reduces net energy procurement costs and creates a closed‑loop resource cycle. The modular plant can be sized to match facility demand and is engineered for plug‑and‑play integration with existing boiler, turbine, or fuel‑cell infrastructure. Real‑time process analytics and automated control loops ensure optimal gas quality and operational efficiency with minimal operator intervention.
Target Audience
Primary customers are mid‑size manufacturers, logistics hubs, and municipal waste‑management facilities seeking to offset energy costs and monetize waste streams through on‑site renewable fuel production.
Features
- High‑temperature gasification reactor optimized for biodegradable waste and refuse‑derived fuel (RDF) with a lower heating value of 18 MJ/kg
- Dual output streams: syngas for combined heat‑and‑power (CHP) applications and hydrogen with on‑site methane separation
- Integrated CO₂ capture module enabling carbon‑utilization pathways or compliance‑grade sequestration
- Scalable modular design delivering up to 5 MWh per tonne of RDF, adaptable to plant footprints from 10 kW to multi‑MW scale
- Advanced process control suite with sensor‑fusion, AI‑driven feedstock optimization, and remote diagnostics via secure cloud interface
- Compatibility with existing boiler, turbine, or fuel‑cell systems through standardized inlet/outlet pressure and composition interfaces
- Low‑maintenance refractory lining and automated ash handling to minimize downtime and operational labor
- Compliance with IEC 62264 and ISO 14001 for safety, emissions, and environmental management