Our Biomass Fired Hot Water Boiler represents the pinnacle of sustainable thermal engineering, designed to convert organic biomass fuels into high-efficiency heating energy. By utilizing a sophisticated combustion path where flames travel through a specialized combustion chamber and wing-shaped flues, the system ensures maximum heat exchange while protecting the pot shell from excessive radiation, significantly extending the operational lifespan of the equipment.
Engineered for versatility and economy, this boiler series features a compact structural arrangement that minimizes the installation footprint and reduces logistics costs. From small-scale industrial applications to large-scale heating projects, our biomass solutions deliver a high thermal efficiency (up to 92.8%) and stable working pressures, making them an ideal choice for enterprises seeking to reduce carbon emissions without compromising on industrial performance.
| 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) |
| Max Thermal Efficiency | Up to 92.8% | Exhaust Gas Temp | 123℃ - 128℃ |
| Fuel Type | Biomass Materials | Structure Type | Compact Arrangement |
| Air Induction | Induced Draft Fan | Installation Cost | Low/Economical |
Advanced flame routing prevents the bottom of the pot shell from high-temperature radiation, ensuring structural integrity.
Optimized flue pipe bundles achieve thermal efficiency up to 92.8%, reducing fuel consumption significantly.
Space-saving layout reduces the required installation area, making it suitable for restricted industrial sites.
Simplified structure and easy transportation lead to lower overall setup and commissioning expenses.
Reduced flue temperature at the high-temperature tube plate inlet optimizes the heat transfer process.
Specifically designed for biomass fuel, promoting sustainable energy use and reducing carbon footprints.


Optimized biomass feeding systems for consistent fuel supply and combustion stability.
Precision management of the combustion chamber and induced draft fan for optimal airflow.
Real-time pressure and temperature alerts to ensure safe boiler operation at all times.
Integrated monitoring of exhaust gas temperatures to maintain environmental compliance.
Efficient feeding water temperature control to maximize rated thermal power output.
Simplified access to the grate and tube plates for rapid cleaning and routine maintenance.
| Feature | Traditional Coal Boiler | Biomass Hot Water Boiler |
|---|---|---|
| Fuel Cost | High/Volatile | Low/Sustainable |
| Carbon Tax | Significant Expense | Minimal/Credit-eligible |
| Energy Efficiency | 75% - 85% | 87% - 92.8% |
| Installation Space | Large Footprint | Compact/Optimized |
| Operating Life | Standard | Extended (Radiation Protected) |
Our boilers are designed to handle a wide range of organic biomass materials, including wood chips, agricultural waste, and compressed pellets, ensuring versatility across different regions.
The wing-shaped flue optimizes the path of hot gases, increasing the heat exchange surface area and reducing the exhaust temperature, which directly boosts the overall thermal efficiency.
No, the compact arrangement and modular design are specifically intended to lower installation costs and simplify the setup process, reducing the time required for commissioning.
Depending on the model, our biomass hot water boilers can reach a maximum thermal efficiency of 92.8%, as seen in our high-capacity models (e.g., DZL63 series).
The design ensures that the flame passes through a short wall into a combustion chamber before entering the flues, effectively preventing the pot shell bottom from direct radiation damage.
Yes, with rated working pressures up to 1.25 MPa and adjustable output water temperatures up to 130℃, these boilers are highly compatible with most industrial and commercial heating systems.