The Biomass Fired Hot Water Boiler is a high-efficiency thermal solution engineered for sustainable industrial heating. By utilizing organic biomass fuels, this system optimizes the combustion process through a precision-engineered path: fuel burns on the grate, passes through the short wall into the combustion chamber, and flows through wing-shaped flues and tube bundles before being extracted via the induced draft fan. This advanced architectural design effectively prevents high-temperature radiation from damaging the pot shell while significantly reducing flue temperatures at the tube plate inlet.
Designed for versatility and economic performance, the boiler features a compact structural arrangement that minimizes the installation footprint. This streamlined design not only facilitates easier transportation and lower installation costs but also ensures maximum thermal efficiency. Whether for industrial processing or commercial heating, these biomass boilers provide a robust, eco-friendly alternative to fossil fuels without compromising on power or reliability.
| Rated Thermal Power | 0.7MW to 63MW | Working Pressure | 0.7MPa to 1.25MPa |
|---|---|---|---|
| Output Water Temp | 95℃ to 130℃ | Feeding Water Temp | 70℃ (Standard) |
| Thermal Efficiency | Up to 92.8% | Exhaust Gas Temp | 123℃ to 128℃ |
| Fuel Type | Biomass / Organic Waste | Configuration | Compact Shell Design |
| Control System | Industrial PLC Integrated | Emission Standard | Environmental Compliant |
Innovative flue path prevents the boiler shell bottom from being radiated by furnace high temperatures, extending equipment lifespan.
Compact body arrangement reduces on-site assembly time and lowers overall installation labor costs significantly.
Optimized thermal efficiency reaching up to 92.8%, ensuring maximum heat recovery from every unit of biomass fuel.
Efficient spatial arrangement allows the system to cover a small area, making it ideal for facilities with limited space.
Reduces the flue temperature of the high-temperature tube plate inlet to enhance overall heat transfer performance.
Combines low fuel costs with high energy output, providing an economical heating solution for modern manufacturing.
Automated biomass feeding systems to ensure consistent combustion and steady steam/water output.
Precision temperature monitoring for rated output water temperatures from 95℃ to 130℃.
Integrated safety valves and sensors to maintain rated working pressures up to 1.25 MPa.
Real-time exhaust gas monitoring to keep temperatures within the 123℃-128℃ efficiency range.
Optimized dimensions for streamlined transportation and reduced site installation overhead.
Systematic tracking of thermal efficiency levels to ensure performance stays above 87%.
| Performance Metric | Traditional Coal Boiler | Biomass Hot Water Boiler |
|---|---|---|
| Fuel Cost | High/Volatile | Low/Sustainable |
| Carbon Footprint | High Emissions | Carbon Neutral Potential |
| Thermal Efficiency | 75% - 85% | 87.8% - 92.8% |
| Installation Cost | Standard | Low (Compact Design) |
| Operational ROI | Moderate | High (Fuel Savings) |
Biomass boilers offer significantly lower fuel costs and a reduced environmental impact. Our specific design ensures thermal efficiencies up to 92.8%, reducing operational expenses while meeting strict emission standards.
The compact design means the boiler covers a smaller area, reducing the required facility footprint. It also simplifies transportation and lowers the costs associated with on-site installation.
Our product range is highly scalable, with rated thermal power options ranging from 0.7 MW for smaller operations up to 63 MW for large-scale industrial applications.
The system uses a specialized flue path where flames pass through a short wall and wing-shaped flues before reaching the chimney, effectively shielding the bottom of the pot shell from direct high-temperature radiation.
The DZL series ranges from 87.8% for the 0.7MW model up to 92.8% for the 63MW model, demonstrating that efficiency actually improves as the system scale increases.
Yes, they are designed for general biomass fuels. However, we recommend specifying your fuel type during the consultation phase to ensure the grate and feeding system are optimized for your specific material.