<th id="5nh9l"></th><strike id="5nh9l"></strike><th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th><strike id="5nh9l"></strike>
<progress id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"><noframes id="5nh9l">
<th id="5nh9l"></th> <strike id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span>
<progress id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span><strike id="5nh9l"><noframes id="5nh9l"><strike id="5nh9l"></strike>
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"></span><span id="5nh9l"><video id="5nh9l"></video></span>
<th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th>
<progress id="5nh9l"><noframes id="5nh9l">

動態氧化條件下含鈦高爐熔渣中金屬鐵的聚集、長大與沉降行為

Coalescence,growth and settling of metallic Fe droplets in molten Ti-bearing blast furnace slag under dynamic oxidation condition

  • 摘要: 為了探明動態氧化條件下含鈦高爐熔渣中金屬鐵的聚集、長大及沉降行為,通過高溫氧化實驗研究氧化時間、空氣攪拌強度和純氧氧化對金屬鐵沉降的影響.此外,還研究動態氧化過程中熔渣的溫度與黏度變化情況,計算金屬鐵在熔渣中的沉降速度.實驗室與1200 kg中試實驗結果表明,向熔渣鼓入氧化性氣體,低價鈦化合物減少,熔渣溫度升高,黏度減低,促進金屬鐵聚集、長大和沉降分離.氧化時間過長,熔渣中(FeO)與低價鈦化合物基本消失,金屬鐵回收率下降.氧化終點的判斷應以保留一定含量(FeO)與低價鈦為依據.

     

    Abstract: To explore the coalescence, growth and settling behavior of metallic Fe droplets under the dynamic oxidation condition, the effects of oxidation time, air stirring intensity and pure oxygen oxidizing on the coalescence of metallic Fe were investigated in this paper. The changes in temperature and viscosity of the molten slag were studied during the dynamic oxidation process, and the settling speed of metallic Fe was calculated. It is indicated by lab and 1200 kg pilot-scale experiments that low valence titanium is oxidized by blowing the oxidizing gas. As the temperature increases, the viscosity of the slag decreases, which accelerates the coalescence, growth and settling of metallic Fe droplets. With a longer oxidizing time, low valence titanium and (FeO) finally almost vanish, and metallic Fe droplets are oxidized, resulting in the decrease of metallic Fe recovery. The judgment of the oxidation end point depends on the (FeO) and low valence titanium content.

     

/

返回文章
返回
<th id="5nh9l"></th><strike id="5nh9l"></strike><th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th><strike id="5nh9l"></strike>
<progress id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"><noframes id="5nh9l">
<th id="5nh9l"></th> <strike id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span>
<progress id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"><noframes id="5nh9l"><span id="5nh9l"></span><strike id="5nh9l"><noframes id="5nh9l"><strike id="5nh9l"></strike>
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"><noframes id="5nh9l">
<span id="5nh9l"></span><span id="5nh9l"><video id="5nh9l"></video></span>
<th id="5nh9l"><noframes id="5nh9l"><th id="5nh9l"></th>
<progress id="5nh9l"><noframes id="5nh9l">
259luxu-164