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Biomass hot water boiler

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北京创威博达锅炉设备有限公司

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Description

I. Brief Introduction to Biomass Boiler Technical Performance

1. Fully automatic operation with variable frequency control, automatic ignition, and flame retention function; utilizes a carbon-air blend plus fully pre-mixed gas-phase separation biomass pellet combustion technology, combined with fluid dynamics. Automatic combustion ensures smoke and dust-free emissions, promoting energy conservation and environmental protection.

2. Full horizontal three-dimensional structure design, integrating traditional heat transfer principles, operates with energy-saving and electricity-saving features, reducing energy consumption. The furnace body does not require ash cleaning for extended periods and requires no maintenance; features an extra-large combustion chamber with a large high-temperature heat exchange area, suitable for both wood and biomass pellets, saving operational costs; easy to maintain with no blind spots.

3. Utilizing centrifugal rotation combustion technology, coupled with chemical reaction kinetics, it increases radiation heat exchange time, extends the radiation distance, enhances the efficiency of heat exchange, and ensures constant temperature with energy savings.

4. Full intelligent automatic operation with IoT remote variable frequency control technology, automatic ignition, easy and labor-saving, simple to use. Variable frequency control, automatic ignition, and automatic flame retention function.

5. Four-pass design, utilizing waste heat from condensation, with low chimney exhaust temperatures; produces high-temperature hot water, offering superior heating quality, and saves energy by approximately 30%.

6. Integrated unit quick assembly structure, ergonomic design. Simple installation, simple maintenance, and easy to use.

7. High-temperature automatic scaling removal; the waste heat recovery unit reaches approximately 85℃ for boiling, trapping scale within the waste heat recovery period. This allows clean, scale-free hot water to enter the hot water boiler, achieving rapid hot water production and fuel savings.

8. Dual dust removal design, with the induced draft fan installed after waste heat recovery and dust removal, ensuring the fan is unaffected by high temperatures and dust, preventing resonance. Further, secondary dust removal is applied to ensure smoke and dust-free emissions, meeting environmental protection standards.

9. 45-degree inclined feeding ensures no tempering phenomena; high-temperature carbon combustion gasification, with the combustion chamber temperature reaching up to 1200°C, segmented combustion.

10. Exceptional details, quality reflected, multi-layer protection, prevents dry burning and water shortage, ensuring no accidents occur.

11. Water Shortage Protection: In the event of insufficient water in the hot water boiler, the controller automatically shuts off the heating unit and sounds a water shortage alarm, preventing the boiler from being damaged due to dry burning.

12. Water Level Protection: Equipped with a water level sensor for real-time detection, the hot water boiler features automatic water level control to ensure precise and normal water supply. High and low water level alarm with interlock protection, one in use and one in reserve, for convenient and quick maintenance.

13. Over-temperature Protection: Prevents dry burning in hot water boilers, initiates emergency response, promptly activates a cascade control, and stops operation.

14. Furnace Explosion Protection: Designed with the combustion characteristics of biomass pellet hot water boilers in mind, the furnace incorporates explosion-proof venting to ensure stable operation of the hot water boiler.

15. Utilizing high-temperature-resistant wire: high insulation grade, durable and long-lasting.

16. Scientific design, exquisite appearance. The square box-shaped biomass hot water boiler shell is treated with electrostatic powder coating, ensuring a beautiful look and high corrosion resistance. The square box shell is manufactured using CNC cutting and bending for one-time forming, with meticulous craftsmanship. The surface is treated with high-temperature electrostatic powder coating, providing durability and a tasteful appearance.

17. This equipment features a compact structure with minimal footprint, is factory-integrated, and all units and accessories undergo pre-delivery testing and debugging. They pass rigorous inspections to ensure customer satisfaction and peace of mind.



II. Carbon Gas Blending Composite Combustion Technology Introduction:

Our company employs advanced design concepts and biomass pellet combustion technology, developing a constant-temperature combustion method specifically tailored to the characteristics of biomass pellet fuel. This method is currently one of the more reasonable and stable biomass pellet combustion methods in China.

A graded combustion technology for biomass particle boilers, tailored to the characteristics of different biomass types, and based on fluid dynamics principles, the conservation laws of mass, momentum, and energy. This approach revolutionizes traditional combustion methods, dividing the process into stages: ignition, flame, with four types of flames in sequence: premixed flame, laminar flame, turbulent flame, and diffusion flame. It involves dry distillation, carbonization, carbon combustion, and gasification, all manifesting as flames.

Biomass pellet fuel has an initial energy, produced around 325-500 degrees Celsius, and ignites rapidly upon reaching a certain concentration. At this point, most homogenous gases, hydrogen, ethylene, and other combustible gases undergo a chain-graded combustion reaction. Fluid dynamics (scientific air distribution) plays a key role by creating the concentration of active intermediates. The分级 combustion technology first involves a rapid exothermic and luminous oxidation reaction of biomass pellets with oxygen or air through intelligent feeding.

Biomass boilers are designed in the shape of reaction vessels, ensuring stable states for mass and heat transfer. A biomass boiler that improves combustion through the use of high-temperature air.

Fuel is introduced from the bottom, and burns from top to bottom, sequentially passing through: 1. the discharge layer, 2. the pyrolysis layer, 3. the carbonization layer, 4. the carbon combustion layer, and 5. the gas combustion layer. The biomass pellet fuel is first carbonized at high temperatures and then gasified for combustion, rather than being directly added to a burning furnace.

Distillation zone: The biomass granule raw material layer, fed continuously by a specially designed lower feeding device, is propelled forward by a spiral feeder, with the material at the bottom being continuously moved upwards. As this section is not aerated, the heat radiation from the combustion above causes the lower part to undergo anaerobic distillation. At this point, biomass pyrolysis occurs, producing a premixed flame. The combustible gases and air or oxygen decompose into ethylene and carbon dioxide according to the chemical equivalent in an anaerobic or oxygen-free state. The chemical reaction is confined to a very narrow flame front, forming a flame (also known as a power flame). These gases further decompose to produce liquid aromatics, tar, and solids.

Carbonaceous layer: Flame produced during the combustion of a combustible mixture that is either stagnant or in laminar flow, characterized by an increasing temperature and the continuous decomposition and vaporization of the produced liquid. The flame front is torn apart, and during the volatilization process, it undergoes destructive distillation to become hydrocarbon gas. The carbonization does not include gases produced by combustion.

Carbon combustion layer: A turbulent flame produced by the combustion of unpremixed combustible materials and oxygen or air, characterized by a highly luminous, heat-releasing reaction interface or space. Through the microproperties of biomass particles, it generates glowing, incandescent flue gas. Steam produced during biomass decomposition is decomposed into oxygen at high temperatures.

Gas combustion layer: Due to the stratified nature of layer combustion technology in air distribution, a diffused flame is produced. As fuel combines with air and oxygen inside the furnace, carbon oxides are formed, which decompose into low molecular compounds in the high-temperature environment, resulting in free carbon particles. When these particles combine with oxygen during combustion, they burn intensely, creating a bright, white flame. This flame can raise the furnace temperature to 1200°C, with peak temperatures reaching up to 1400°C; small boilers can also reach temperatures from 950°C to 1100°C.

Three: Advanced performance, high level of automationIV. Comparison of Energy Consumption Costs for Various Fuels:



1. Technical Specifications of Full-Automatic Biomass Pellet Atmospheric Pressure Hot Water Boiler (Biomass-Specific)Section 2: Technical Specifications of Full-Automatic Biomass Pellet Atmospheric Pressure Hot Water Boiler (Tri-Fuel: Biomass/Fossil Coal/Wood)1. The calorific value is calculated according to the following standard: 4200 kcal/kg

2. Fuel consumption figures are based on the full load of the boiler. Actual consumption may vary depending on operating conditions.

3. Retain the right to redefine or alter product information without prior notice (including appearance, dimensions, control methods, and internal structure).

Disclaimer:Info provided by user, user liable for authenticity, accuracy & legality. Zhongshang114 assumes no liability.

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Unit Price Negotiable
Inquiry None
Delivery Beijing
Brand Chuangwei Boda
Boiler Applications Heating Hot Water Boiler
Custom Processing & Tailoring Is
Available for sale National
Expiry Long Valid
Update 2026-01-30 14:09
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