Our Biomass Fired Hot Water Boilers are engineered for high-efficiency thermal energy production, utilizing sustainable biomass fuels to reduce carbon footprints and operational costs. Designed with an advanced combustion flow system, the flame travels from the grate through a precision-engineered combustion chamber and wing-shaped flues, ensuring maximum heat exchange and optimal energy recovery.
By integrating a compact structural design and a high-performance induced draft system, these boilers minimize installation footprints while maximizing output. This series is specifically optimized to prevent shell radiation and lower flue temperatures, providing a reliable, economic, and eco-friendly heating solution for a wide range of industrial applications.
| Thermal Power Range | 0.7 MW - 63 MW | Working Pressure | 0.7 MPa - 1.25 MPa |
|---|---|---|---|
| Output Water Temp | 95℃ - 130℃ | Feeding Water Temp | 70℃ (Standard) |
| Thermal Efficiency | Up to 92.8% | Exhaust Gas Temp | 123℃ - 128℃ |
| Fuel Type | Biomass / Organic Waste | Design Structure | Compact Arrangement |
| Control System | Industrial Grade | Emission Standard | Low Emission Design |
Prevents the bottom of the pot shell from radiation by high temperatures, extending equipment lifespan.
Compact body arrangement reduces installation time and associated labor costs significantly.
Optimized flue pipe bundles achieve thermal efficiency as high as 92.8% for maximum ROI.
Space-saving design ensures the boiler covers a small area, ideal for tight industrial sites.
Reduces flue temperature at the high-temperature tube plate inlet for better heat absorption.
Low installation costs combined with cheap biomass fuel lead to significant long-term savings.
Automated biomass feeding systems to ensure continuous and stable combustion.
Real-time monitoring of water temperature and pressure for precision operations.
Integrated alarm systems for pressure anomalies and flame failure detection.
Monitoring exhaust gas temperatures to ensure environmental compliance.
Digital tracking of tube cleaning and grate maintenance schedules.
Calculation of fuel-to-heat ratios to optimize daily biomass consumption.
| Comparison Factor | Traditional Coal Boiler | Biomass Hot Water Boiler |
|---|---|---|
| Fuel Cost | High / Volatile | Low / Sustainable |
| Carbon Tax | Significant | Minimal / Carbon Neutral |
| Installation Cost | High (Complex) | Low (Compact Design) |
| Thermal Efficiency | 75% - 85% | 87% - 93% |
| Payback Period | Long Term | Short to Medium Term |
Our boilers are designed to handle various organic materials, including wood chips, agricultural waste, pellets, and other sustainable biomass fuels.
The compact arrangement reduces the total site area required and simplifies transportation, which directly lowers the overall installation and logistics costs.
Depending on the model, our thermal efficiency ranges from 87.8% up to 92.8%, ensuring minimal energy waste during the combustion process.
The system utilizes a specific flame path through a short wall and combustion chamber, preventing high-temperature radiation from reaching the bottom pot shell.
Yes, we offer a wide range of capacities from 0.7 MW for small facilities up to 63 MW for large-scale industrial applications.
The induced draft fan extracts combustion gases through the chimney, maintaining the necessary pressure differential for efficient burning and emission removal.