Trigen DC offers integrated smart industrial heat pump systems that provide zero-carbon heating and cooling solutions for industrial sectors. Their high-temperature and combined heating and cooling (CHC) systems efficiently manage electricity, heat, and cooling, reducing energy consumption and carbon footprints for manufacturers.
Funding
Funding not disclosed
Founders
Product
Problem
Industrial sectors consume a significant portion of global energy for heating and cooling, contributing substantially to CO2 emissions. Traditional methods often rely on fossil fuels, creating environmental challenges and increasing operational costs.
Solution
Trigen DC provides integrated smart industrial heat pump systems designed for zero-carbon operations. These systems efficiently manage electricity, heat, and cooling, offering a sustainable alternative to conventional heating and cooling methods. By electrifying industrial processes, Trigen DC helps businesses reduce their energy consumption and carbon footprint. The company's solutions are engineered to deliver high efficiency and cost savings, supporting industrial decarbonization efforts and contributing to a greener future.
Target Audience
The primary target audience includes industrial manufacturers and commercial enterprises seeking to reduce their energy consumption, operational costs, and carbon emissions through advanced heating and cooling technologies.
Features
- High-temperature heat pumps capable of generating steam and hot water up to 135°C, with future development targeting 190-200°C.
- Combined Heating and Cooling (CHC) systems that simultaneously provide heating and cooling outputs from a single unit.
- Ultra-low ambient heat pumps designed to operate effectively in temperatures as low as -40°C.
- Phase Change Material (PCM) thermal storage solutions for efficient energy management and utilization of waste heat.
- Renewable Energy (RE) integrated CHC systems (RICHCS) for 100% GHG emission-free operations.
- Heat pump-based dryers providing hot air up to 110°C for various industrial drying applications.
- IoT-based remote monitoring and predictive analysis capabilities for all heat pump systems.
- Multi-compressor design (2-4 compressors) for enhanced reliability and reduced downtime compared to single or dual compressor systems.
- Use of inner groove tubes in condensers and evaporators for increased surface area and improved heat transfer rates.
- Systems designed for a 10-15°C ambient temperature range, ensuring optimal performance.
- Integration of electronic expansion valves for precise flow control.