Low Nitrogen Combustion Technology System with NOx Emissions Below 200mg/Nm³ and Temperature Control Under 1000°C
Price:
It’s based on the contract. More sets more disadvantage
MOQ:
1 Set/Sets
Delivery Time:
By contract
Brand:
JinSha
Product Description
Low Nitrogen Combustion Technology Solutions
Advanced combustion technology designed to significantly reduce nitrogen oxide (NOx) emissions through multiple control methods, ensuring environmental compliance and operational efficiency.
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Three Primary NOx Control Methods
- Advanced Burner Technology: Utilizes scattered flame combustion method to prevent flame concentration, control combustion temperature below 1000°C, and reduce NOx formation at the source
- Flue Gas Recirculation: Recycles waste flue gas at approximately 100°C back into the combustion chamber, effectively controlling temperature and minimizing NOx generation
- Denitration Unit Integration: Optional flue gas denitration system for enhanced security and strict NOx emission control, compatible with desulfurization technologies
Emission Performance Standards
Through implementation of Methods 1 and 2, NOx emissions can be reduced to less than 200mg/Nm³. For areas with stricter environmental regulations, the additional denitration system can achieve emissions below 150mg/Nm³.
Field validation from a Xiamen customer application demonstrates exceptional performance, achieving NOx emissions of 128.46mg/Nm³ using only low nitrogen combustion technology and flue gas recirculation, without requiring additional denitration equipment.
Operational Benefits
- Reduced operational costs for flue gas treatment systems
- Compliance with stringent environmental protection standards
- Enhanced combustion efficiency and system security
- Proven performance in real-world industrial applications
Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Tangshan Jinsha Combustion Heat Energy Co.,Ltd
Location
Qian’an Industrial Park, Tangshan, Hebei, China
Contact Person
Ding