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Temperature Rise Characteristics of CarbonContaining Chromite Ore Fines in Microwave Field

LI Ning , CHEN Jin , YAN Hong , FENG Xiumei , CUI Huijun , LIU Jinying

钢铁研究学报(英文版)

To avoid the nonuniform phenomena of heat and mass transfer of metallurgical powdery materials caused by conventional heating method, the temperature rise characteristics of carboncontaining chromite ore fines in the microwave field were investigated using microwave heating in a microwave metallurgical furnace. The experimental results show that the carboncontaining chromite ore fines have better temperature rise characteristics in the microwave field at a frequency of 245 GHz. After heated in the microwave field of 10 kW, the temperature of 1 kg carboncontaining chromite ore fines rose up to 1 100 ℃ in 7 min, at a temperature rise rate of 1571 (℃·min-1·kg-1), whereas the temperature of 1 kg carboncontaining magnetite ore fines rose only up to 1 000 ℃ in 10 min, at a temperature rise rate of 100 (℃·min-1·kg-1). With increasing carbonfitting ratios and by adding calcic lime, their heating effects changed regularly.

关键词: carboncontaining chromite ore fine;carboncontaining magnetite ore fine;microwave field;temperature rise characteristics

Kinetics of Voluminal Reduction of Chromium Ore Fines Containing Coal by Microwave Heating

CHEN Jin , WANG Shebin , ZHANG Meng , LIU Jinying , ZHOU Jianxiong

钢铁研究学报(英文版)

The kinetics of voluminal reduction of chromium ore fines containing coal (COFCC) by microwave heating was studied. When the molar ratio of carbon to oxygen was 084 and that of CaO to SiO2 was 039 in COFCC, the temperaturerising rate of COFCC by microwave heating was 625 ℃/min, 6875 ℃/min, 7059 ℃/min, and 7222 ℃/min at 1 000 ℃, 1 100 ℃, 1 200 ℃, and 1 300 ℃, respectively. The results show that the voluminal reduction of COFCC by microwave heating at solidsolid phase is first order reaction, with the apparent activation energy of 51480 kJ/mol. The limiting step of reaction rate for the overall reaction is the mass transfer of CO in the reduced product layer between dielectric particles of chromium ore and coal.

关键词: kinetics;microwave heating;voluminal reduction;chromium ore fine

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