Jining 25-ton biomass boiler, manufacturer_SupplyPro Co., Ltd._Shandong Zhongjie Special Equipment Co., Ltd. 
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Home > SupplyPro Co., Ltd. > Jining 25-ton biomass boiler, manufacturer
Jining 25-ton biomass boiler, manufacturer
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: 2025-06-19 08:19
 
详细Info

Shandong Zhongjie Special Equipment (formerly Heze Boiler Factory Co., Ltd.) was established in 2001, located at No. 2218 Jinnan Road, Economic and Technological Development Zone, Heze City. With a registered capital of 50 million yuan and total assets of 500 million yuan, the company has 7 business centers: boiler, deep-freeze containers, pressure vessels, central air conditioning, engineering installation, international trade, and Internet of Things. It operates three factory sites on Jinnan Road, East Changjiang Road, and Bohai Road, covering a total area of 200,000 square meters, with the main workshop spanning 83,000 square meters. It currently employs 710 people, including 247 engineering and technical staff and 82 intermediate-level technicians. In December 2016, it was recognized as a "High-tech Enterprise" by the Science and Technology Department. In June 2021, it was identified as a "Specialized, Fine, and New Enterprise of Shandong Province" by the Ministry of Industry and Information Technology. In June 2022, it was named a "Gazelle Enterprise of Shandong Province" and in August 2022, it was recognized as a "Specialized, Fine, and New Small Giant Enterprise" by the Ministry of Industry and Information Technology.
Energy-saving methods for biomass hot water boilers mainly include the following aspects:
Fuel Selection: Choose biomass fuel in appropriate quantities, such as wood chips and straw, ensuring the moisture content and particle size meet the requirements of the boiler. Low moisture content and suitable particle size of the fuel can enhance combustion efficiency and reduce energy waste.
Combustion Optimization: Enhance combustion efficiency by optimizing the combustion process. Adjust combustion parameters such as combustion temperature and duration to achieve a more complete burn and reduce fuel waste.
Heat Recovery Utilization: Utilize waste heat from flue gas for heat recovery. By installing flue gas waste heat recovery units, recover and utilize the remaining heat in flue gas for other heating needs, such as heating and hot water, to improve energy efficiency.
Boiler Insulation: Enhance the insulation of the boiler to reduce heat loss. Insulate the boiler's shell and pipes to minimize heat dissipation, thereby improving the boiler's thermal efficiency.
Control System Optimization: Optimize the boiler control system to achieve precise temperature and pressure control. Through reasonable control strategies, reduce energy waste and enhance the operational efficiency of the boiler.
Regular Maintenance: Regularly maintain and service the biomass hot water boiler to ensure normal operation. Clean the combustion chamber, heat exchangers, and other components, inspect and replace worn parts, and ensure the boiler's operation.
Energy Management: Establish a scientific energy management system, monitor and analyze energy consumption, and formulate reasonable energy-saving measures. Continuously optimize the operation of boilers through energy management methods to achieve energy-saving goals.
By integrating the above energy-saving methods, the energy utilization efficiency of biomass hot water boilers can be improved, energy waste reduced, and the goal of energy conservation and environmental protection achieved.
济宁25吨生物质锅炉
Biomass fuel boilers feature the following product characteristics:
Fuel Diversity: Biomass fuel boilers can accommodate a variety of biomass fuels such as sawdust, straw, rice husks, etc. This diversity allows for greater flexibility and sustainability in energy utilization.
Eco-friendly Low Emission: Biomass fuel boilers burn biomass fuel, resulting in relatively low emissions during combustion, such as particulates and nitrogen oxides. Consequently, biomass fuel boilers have lower carbon emissions and environmental pollution.
Energy-saving: The biomass fuel boiler utilizes advanced combustion technology and heat recovery techniques to achieve efficient combustion and heat utilization. High combustion and thermal efficiency ensure the maximum energy extraction from biomass fuel.
Automated Control: The biomass fuel boiler is equipped with an automated control system that accurately controls and adjusts parameters such as temperature, pressure, and fuel supply. The control system features safety protection functions to ensure the safe operation of the boiler.
High Reliability and Stability: The materials and processes used in biomass fuel boilers offer excellent durability and stability. Rigorous quality control and testing ensure the boiler's high reliability and long-term stable operation.
Flexible Application: Biomass fuel boilers are widely applicable in industrial, commercial, and residential sectors, such as for heating, heating supply, and steam generators. They offer flexible installation methods and capacity options, catering to the diverse needs of different users.
济宁25吨生物质锅炉
Reducing emissions of nitrogen oxides (NOx) from biomass boilers can be achieved through the following measures:
Combustion Control Technology: Utilizes advanced combustion control techniques such as low nitrogen combustion technology. By optimizing the combustion process and controlling the combustion temperature and oxygen concentration, the generation of nitrogen oxides is reduced. Methods like staged combustion and optimized combustion chamber design can be employed to lower combustion temperatures and extend combustion times, further decreasing nitrogen oxide formation.
SNCR Technology: Selective Non-Catalytic Reduction (SNCR) technology involves injecting reductants, such as urea solution, into the combustion process to react with nitrogen oxides, converting them into nitrogen and water. This technique can reduce the formation and emissions of nitrogen oxides during combustion.
SCR Technology: Selective Catalytic Reduction (SCR) technology is a nitrogen oxide control method. By injecting urea solution into flue gas and using a catalyst, nitrogen oxides are converted into nitrogen and water. SCR technology achieves nitrogen oxide removal at lower temperatures, suitable for large biomass boilers.
Flue Gas Recirculation: Flue Gas Recirculation (FGR) technology recycles a portion of flue gas back into the boiler combustion chamber, reducing combustion temperature and oxygen concentration, thereby minimizing the formation of nitrogen oxides. This technique can control nitrogen oxide emissions by adjusting the recirculation ratio.
Fuel selection and pretreatment: Choosing low nitrogen fuels, such as low nitrogen biomass fuel, can reduce the formation of nitrogen oxides. Additionally, for biomass fuels with high nitrogen content, pretreatment measures like drying and gasification can be taken to decrease the formation of nitrogen oxides during combustion.
Regular Maintenance and Cleaning: Regularly maintain and clean biomass boilers to ensure the cleanliness and proper operation of components like burners and heat exchangers. Cleaning the combustion chamber and heat exchangers can reduce soot buildup, enhance heat transfer efficiency, and decrease nitrogen oxide emissions.
By implementing the aforementioned measures comprehensively, nitrogen oxide emissions from biomass boilers can be effectively reduced, achieving both environmental protection and energy-saving goals. The specific measures to be chosen should be based on the characteristics of the boiler, its operating conditions, and emission requirements.
济宁25吨生物质锅炉
The biomass boiler boasts several advantages:
Renewable Energy: Fuel for biomass boilers comes from organic materials such as plants, animals, and microorganisms, making it a renewable energy source. Compared to traditional fossil fuels, biomass fuel has lower carbon emissions and environmental impact, contributing to the reduction of greenhouse gas emissions and being more environmentally friendly.
Diverse Fuel Sources: Biomass fuel sources are extensive, including wood, straw, waste crops, food scraps, and municipal solid waste. This diversity in fuel sources allows biomass boilers to be flexible and adaptable, utilizing waste and by-products from plants and animals.
Environmental Friendliness: The carbon dioxide emitted during the combustion process of biomass boilers can be absorbed by plants, forming a cycle that reduces air pollution. Additionally, the emissions and ash produced by biomass boilers are relatively low, resulting in minimal environmental impact.
Energy Security: Biomass, as a native renewable energy source, can reduce dependence on imported energy and enhance energy security. In regions with scarce resources, the use of biomass boilers can provide a reliable energy supply.
Economic Efficiency: Biomass fuel is relatively cost-effective, capable of reducing energy costs. Moreover, the technology and equipment for biomass boilers are continuously evolving and maturing, making them more economically competitive.
Waste Utilization: Biomass boilers can utilize agricultural by-products such as crop straw, wood waste, effectively utilizing waste resources and reducing resource waste.
In summary, biomass boilers offer advantages such as renewable energy, diverse fuel sources, environmental friendliness, energy security, economic efficiency, and waste utilization, making them a sustainable energy solution.
Shandong Zhongjie Special Equipment, welcome customers to our factory for business discussions.

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