Beijing Gas Fully Premixed Condensing Low-Nitrogen Boiler: More Energy-Efficient and Eco-Friendly.
Contact Info
- Add:陕西省渭南市临渭区经济技术开发区前进路北段, Zip:
- Contact: 范高峰
- Tel:0913-2584118
- Email:2847916676@qq.com
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1. Why is the Vandelee Gas Fully Premixed Condensing Low-NOx Variable Frequency Boiler More Energy-Efficient? - Fully premixed metal mesh surface combustion technology reduces the excess air coefficient, preventing excessive air from carrying away heat. - Efficient heat exchange design with an ultra-large heating surface lowers flue gas temperature, with direct exhaust temperatures as low as 40°C, minimizing heat loss. - Micro-flame surface combustion technology eliminates localized high temperatures, ensuring uniform heating and avoiding incomplete combustion. - High water flow velocity prevents scaling, simplifies maintenance, and ensures no annual efficiency degradation. - The combustion chamber, free of refractory materials, features an insulated integrated heat exchanger to prevent heat loss and improve thermal efficiency. - Boiler water capacity is limited to a few dozen liters, resulting in low standby heat loss. Rapid internal water flow quickly dissipates heat, delivering hot water in just 1 second. - Enables distributed energy systems by replacing large heating networks with gas pipelines, reducing investment and heat loss. - Automatic DC variable frequency operation precisely matches load output, avoiding frequent boiler cycling and associated gas waste. 2. Why is the Vandelee Gas Fully Premixed Condensing Low-NOx Variable Frequency Boiler More Environmentally Friendly? - Vandelee Fully Premixed Condensing Low-NOx Variable Frequency Boiler: Fully Premixed Combustion Ensures an optimal oxygen-to-fuel ratio for each combustion molecule, preventing CO generation from incomplete combustion and achieving complete combustion. - Vandelee Fully Premixed Condensing Low-NOx Variable Frequency Boiler: Surface Micro-Flame Combustion Traditional high-pressure jet gas burners use diffusion combustion, whereas metal fiber burners produce short, uniform flames without localized high-temperature zones. With lower fire port intensity, NOx emissions are significantly reduced.
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