How Much Power Does a 9-Ton Biomass Boiler Have?
Typically, the power of a biomass boiler is correlated with its evaporation capacity and can be estimated using the following formula:
Power (kW) = Evaporation Capacity (t/h) × 7000 × Fuel Calorific Value (kcal/kg) / 860
Here, 7000 is the coefficient for converting tons to kilowatts, and 860 is the coefficient for converting kilocalories to kilowatt-hours.
Taking the DZL4-1.25-T model as an example, with a design thermal efficiency of 82.95% and a fuel consumption rate of 200 to 750 kg/hour, assuming a fuel calorific value of 4500 kcal/kg, the approximate power of a 9-ton biomass boiler would be:
Power = 9 × 7000 × 4500 / 860 ≈ 763 kW
This calculation is only an estimate, and the actual power may vary depending on the specific parameters and operating conditions of the boiler.
The power of a 9-ton biomass boiler is influenced by various factors, including:
1. Design Parameters: The design parameters of a 9-ton biomass boiler, such as furnace volume, flue gas flow, and heat exchange surface area, all affect the boiler's power. Design considerations include fuel characteristics, combustion efficiency, and heat exchange efficiency.
2. Combustion Efficiency: The combustion efficiency of a 9-ton biomass boiler is a significant factor in determining its power. High combustion efficiency means more fuel energy is converted into heat, thereby increasing the boiler's power output.
3. Fuel Calorific Value: The calorific value of biomass fuel directly affects the boiler's thermal output. The higher the fuel's calorific value, the more heat is released per unit mass of fuel, and the greater the boiler's power.
4. Boiler Control System: An intelligent control system can optimize the combustion process, improve combustion efficiency, and thus affect the boiler's power.
5. Boiler Load: The actual heat load demand in practical use also affects the boiler's power. The boiler needs to adjust its output power according to actual demand.
6. Environmental Requirements: Environmental standards may limit the boiler's output power to reduce pollutant emissions.
7. Boiler Operating Conditions: Operating conditions, including ambient temperature and water quality, can affect the boiler's power.
8. Fuel Supply Stability: The stability and continuity of fuel supply also affect the boiler's continuous operation and power output.
9. Boiler Maintenance and Care: Good maintenance and care can ensure the boiler's efficient operation, thereby maintaining its power stability.
10. Technical Parameters: Optimization of technical parameters such as flue gas temperature and excess air coefficient also affect the boiler's power and thermal efficiency.
ZOZEN Boiler's 9-ton biomass boiler stands out for its high efficiency and environmental protection, wide applicability, intelligent control, customized solutions, and comprehensive after-sales service, providing reliable solutions for the market. ZOZEN Boiler has tailored a chain grate biomass steam boiler solution for Xuan Paper Co., Ltd., using the technologically innovative SZL series biomass boilers. With layer combustion and independent wind chamber design, it stably outputs thermal energy, efficiently utilizes fuel, and ensures the stable heat source required for Xuan paper production, demonstrating ZOZEN Boiler's capabilities in supporting traditional crafts.
In summary, ZOZEN Boiler's 9-ton biomass boiler has significant advantages in the field of biomass energy utilization and is an ideal choice of heating equipment for enterprises.
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SZL series biomass-fired steam boilerLive Chat6-35 t/h1-2.5 MPa
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DZL series biomass-fired horizontal type steam boilerLive Chat10-40 t/h1.25 MPa / 1.6 MPa / 2.5 MPa
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DZL series biomass-fired steam boilerLive Chat2-10 t/h1-2.5 MPa
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