

Post Requirements

Post Requirements
Product information
Industrial exhaust gas burner
Industrial exhaust gas is an inevitable byproduct of industrial production and a byproduct generated during the production processes of steel, chemical, and other enterprises. It primarily includes blast furnace gas, hydrocyanic acid exhaust, carbon black exhaust, analytical gas, formaldehyde exhaust, methanol waste gas, dimethyl ether exhaust, calcium carbide furnace exhaust, gaseous gas, dry gas, and synthesis gas. These gases generally have low calorific value, low pressure, and are highly toxic. Natural emissions can cause severe atmospheric pollution and significant harm to humans, plants, and the growth of organisms. The combustible gases in exhaust gas have a certain calorific value and, if utilized, can be a valuable energy source. Different exhaust gas compositions have different calorific values, resulting in different uses and utilization methods. Our company has developed various types of industrial exhaust gas burners tailored to the compositional characteristics and calorific values of different exhaust gases. These burners feature simple and rational structures, advanced and reliable processes, and can meet the needs of users for the stable combustion of low-calorific value fuels, protecting the environment while saving users significant fuel costs.
1. Suitable for burning various industrial exhaust gases, such as hydrocyanic acid exhaust, carbon black exhaust, desorption gas, formaldehyde exhaust, methanol exhaust, dimethyl ether exhaust, calcium carbide furnace exhaust, gaseous gas, dry gas, and synthesis gas.
2. Any gas containing combustible components can be used as burner fuel. Burners with varying structures can be designed and manufactured for different gas compositions and calorific values to meet the user's diverse fuel needs.
3. The combination of internal mixing combustion technology and swirl combustion technology ensures stable combustion of low-calorific value fuels.
4. A configurable protection and regulation system enables programmed ignition, automatic regulation, and fault protection.
5. Independent combustion of exhaust gases with a calorific value of 500 kcal/Nm³ can be achieved without the addition of a constant open flame.
6. Energy-saving and environmentally friendly.
7. Designs can be customized to the user's site requirements.
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