Huaihua 25-ton biomass boiler, available for customization_SupplyPro Co., Ltd._Shandong Zhongjie Special Equipment Co., Ltd. 
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Shandong Zhongjie Special Equipment Co., Ltd.

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Home > SupplyPro Co., Ltd. > Huaihua 25-ton biomass boiler, available for customization
Huaihua 25-ton biomass boiler, available for customization
品牌: Zhong Jie
Product Name: Biomass Boiler
Applicable Fuel: Biomass, pellets, bark, firewood, etc.
Recirculation method: Natural circulation boiler
单价: 100000.00/Tai
最小起订Quantity: 1 Tai
供货总Quantity: 9999 Tai
有效期至: 长期有效
最后更新: 2025-05-27 15:04
 
详细Info

Shandong Zhongjie Special Equipment's main products include: fuel (gas) boilers, organic heat carrier boilers, biomass boilers, waste heat boilers, and other boiler products; vacuum insulation cryogenic pressure vessels such as LNG tanks, oxygen-nitrogenargon tanks, and CO2 tanks; pressure vessel products such as denitrification engineering equipment, heat storage and energy storage equipment, and complete chemical equipment sets; central air conditioning and ventilation equipment such as ground (water) source heat pumps, air source units, water-cooled screw units, and air-cooled modules. Planned products include large-scale energy centers, LNG transport vehicles, LNG tank containers, and other green energy equipment.
When planning and arranging the bag dust collector for biomass boilers, the following aspects should be considered:
Baghouse Dust Collector Location: The baghouse dust collector should be positioned near the biomass boiler flue gas outlet to effectively capture particulates in the flue gas. Additionally, the location of the baghouse dust collector should be convenient for operation and maintenance, ensuring ease of cleaning and filter bag replacement.
Arrangement of smoke进出口: The smoke进出口 of the bag filter should be connected to the flue gas pipeline of the biomass boiler to ensure smooth entry and exit of the flue gas from the dust collector. The arrangement should consider the uniformity of flue gas flow and minimize resistance to enhance the dust removal efficiency and operating efficiency of the system.
Baghouse dust collector dimensions and capacity: Determine the dimensions and capacity of the baghouse based on the biomass boiler's flue gas flow and particulate load. Ensure the baghouse meets the flue gas treatment requirements and achieves the expected dust removal effect.
Bag arrangement and selection: Bags are the core components of bag dust collectors. Appropriate bag material and specifications should be chosen based on the characteristics of flue gas and the nature of particulates. The arrangement of bags should be reasonable to ensure that flue gas can pass through the bags evenly, maximizing the capture of particulates.
Dust Cleaning System Layout: Bag filters require regular cleaning to maintain the cleanliness of the filter bags and dust removal efficiency. The layout of the dust cleaning system should be user-friendly and easy to maintain, ensuring both the quality and efficiency of the cleaning process.
Arrangement of exhaust pipes: After treatment by a bag filter, flue gas must be discharged into the atmosphere. The arrangement of the exhaust pipes should ensure the safety and compliance of flue gas emissions.
When planning and arranging the biomass boiler bag dust collector, it is recommended to collaborate with an environmental engineer or equipment supplier, design and construct based on specific circumstances, to ensure the operation and environmental benefits of the dust collection system.
怀化25吨生物质锅炉
A biomass organic heat carrier boiler is a boiler equipment that utilizes biomass as fuel to transfer heat energy through organic heat carriers. Compared to traditional steam boilers, biomass organic heat carrier boilers have the following performance advantages:
High thermal efficiency: The biomass organic thermal carrier boiler uses an organic thermal carrier as the heat transfer medium, offering a high heat transfer efficiency. The organic thermal carrier can achieve liquid heat transfer at low temperatures, resulting in minimal heat loss and enabling a more efficient utilization of fuel's thermal energy, thereby enhancing the thermal efficiency.
Flexibility: The biomass organic heat carrier boiler is suitable for various biomass fuels such as sawdust, straw, etc. Due to the abundance of biomass resources, different biomass fuels can be chosen according to actual conditions, enhancing the fuel's substitutability and flexibility.
Environmental friendliness: The biomass organic heat carrier boiler produces relatively little waste gas and slag during the combustion process, with low levels of pollutants emitted. The biomass fuel itself has low sulfur and low nitrogen characteristics, and the slag after combustion can be reused as organic fertilizer or biomass fuel, reducing environmental pollution.
Safety: The biomass organic thermal carrier boiler uses organic thermal carriers as heat transfer mediums, featuring lower working pressure, thereby reducing safety risks during the boiler operation. Additionally, biomass fuel has a lower risk of explosion and fire during combustion compared to fossil fuels.
Renewability: Biomass organic heat carrier boilers use biomass as fuel, which is a renewable resource that can be continuously replenished through planting and cultivation. Compared to fossil fuels, the use of biomass fuel has a smaller environmental impact, promoting sustainable development.
怀化25吨生物质锅炉
Biomass boilers can be categorized according to different classification criteria. Here are some common methods of classification:
By method of combustion:
Direct Combustion Boiler: Directly burns biomass fuel to produce heat energy.
Gasification Boiler: Converts biomass fuel into combustible gas before combustion.
Pyrolysis Boiler: Converts biomass fuel into combustible gas and solid carbon through pyrolysis, then burns them.
By fuel type:
Wood biomass boiler: Utilizes wood chips, wood shavings, cassava residue, and other wood-based fuels.
Crop biomass boiler: Utilizes straw, rice husks, wheat straw, and other crop waste as fuel.
Industrial waste biomass boiler: Utilizes industrial waste such as sawdust and pulp sludge as fuel.
Categorized by boiler type:
Water Tube Biomass Boiler: Heat is transferred through pipes arranged within the combustion chamber.
Fire-tube biomass boiler: The combustion chamber is equipped with fire tubes, which transfer heat energy through the tubes.
Hybrid biomass boiler: Combines the features of both water-tube and fire-tube designs, featuring both water tubes and fire tubes.
By power scale classification:
Small biomass boilers: Typically range from 1-10MW in power, suitable for small buildings and rural heating.
Medium-sized biomass boiler: Power typically ranges from 10 to 50 MW, suitable for medium-sized industrial plants and large buildings.
Large biomass boilers: Power over 50MW, suitable for large industrial buildings and centralized heating.
These categorization methods merely provide a general overview of biomass boilers; in reality, there are many more specific subcategories and combinations. Different types of biomass boilers may vary in their application scenarios and technical features.
怀化25吨生物质锅炉
High evaporation rates in biomass pellet boiler fuel may lead to the following issues:
Incomplete combustion: High-volatile fuel releases a large amount of steam during combustion, which lowers the combustion temperature and affects the completeness of the combustion. Incomplete combustion leads to heat loss and increased emissions, reducing the boiler's thermal efficiency and environmental performance.
Poor combustion stability: Fuels with high volatility can easily lead to instability in the combustion process, potentially causing issues such as flameout and uneven combustion. This may result in unstable operation of the boiler, affecting the stability of hot water supply.
To address issues caused by high-evaporation fuel, the following measures can be taken:
Combustion System Optimization: Optimize the combustion system of biomass pellet boilers, encompassing aspects such as combustion chamber design, combustion air supply, and mixing. By increasing combustion temperature and enhancing oxygen supply, promote the completeness and stability of combustion.
Combustion Control System: Utilizes a combustion control system for real-time monitoring and adjustment of parameters such as temperature and oxygen content during the combustion process. Adjusts the supply of combustion air based on actual conditions to maintain stability and completeness of the combustion.
Fuel Pretreatment: Pre-treat biomass pellet fuel with high volatilization content, such as drying and crushing. By reducing the moisture content and particle size of the fuel, the content of volatiles is decreased, enhancing the combustion efficiency and stability.
Burner Parameter Adjustment: Adjust the boiler's burning parameters, such as burning temperature and time, based on actual conditions. Through reasonable parameter adjustments, make the burning process better suited to the high evaporation fuel characteristics.
Our company attaches great importance to technological innovation and R&D, with 1 city-level enterprise technology center in Heze City. We have built non-destructive testing, physical and chemical testing, welding testing, hydrostatic testing, and other testing facilities. We are equipped with over 600 types of equipment, including CNC machine tools, X-ray flaw detectors, digital ultrasonic flaw detectors, mechanical property testing machines, chemical analyzers, spectrometers, tensile testing machines, plasma welding machines, and more. The key products and technologies we have developed, such as welding for temperature-pressure vessels, biomass boiler emissions reduction, and waste heat utilization, have successively been included in multiple Shandong Provincial Department of Industry and Information Technology science and technology innovation projects, key projects in Shandong Province, and Heze City innovative and excellent projects, etc. We have accumulated a total of 27 authorized utility models, 16 authorized inventions, participated in drafting 2 standards, 2 industry standards, and registered 15 trademarks. The technical team of our company, in collaboration with Professor Yajiang Li from Shandong University, has jointly developed deep cryogenic container processing technology, which adopts the international plasma arc + wire filling argon arc welding (PAW-GTAW) technology. After being appraised as a provincial-level scientific and technological achievement, our technology level has reached the international standard in the field of deep cryogenic container manufacturing. Choose Zhongjietech, and let's create brilliance together!

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