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高溫低氧燃燒技術在唐鋼高線廠的應用

Application of the High-Temperature Low-Oxygen Combustion Technology in Tanggang High-Speed Wire Mill

  • 摘要: 為了使應用高溫低氧燃燒技術的加熱爐達到高效節能、低污染物特別是低NOx排放的目的,采用計算機數值模擬優化設計了加熱爐的蓄熱式燃燒系統,并運用冶金反應工程學方法開發了成套技術.該技術在唐鋼高速線材廠的實際應用表明:在熱裝鋼坯條件下單位能耗為0.879 GJ/t,爐子熱效率在67%以上,各蓄熱室的排煙溫度在160℃以下,NOx排放小于40×10-6(體積分數).

     

    Abstract: In order to achieve high efficiency, energy saving and low contamination emission for a reheating furnace with the high-temperature low-oxygen combustion technology, a regenerative combustion system of the furnace was designed by the way of numerical simulation, and a set of patent technologies was developed by the theory of metallurgical reaction engineering. An applied result of the patent technologies in Tanggang High-Speed Wire Mill indicated that the energy consume is 0.879 GJ/t, the thermal efficiency of the furnace exceeds 67%, the temperature of emission exhaust gas from the regenerator is below 160℃, and the NOx content in exhaust gas is less than 40×10-6 in voluminal fraction.

     

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