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CaO-Al2O3-SiO2-MgO渣系精煉行為的熱力學預測

Thermodynamic optimization of the CaO-Al2O3-SiO2-MgO slag system

  • 摘要: 采用熱力學軟件FactSage對CaO-Al2O3-SiO2-MgO四元系夾雜物的低熔點區域面積進行了分析計算,發現其低熔點區域可以根據堿度的不同分為兩個區域,利用KTH模型對這兩個低熔點區域內的硫容量進行了計算比較,并結合臨氫鋼12Cr2Mo1R對鋼液成分及脫硫的要求,對其適用的低熔點區域進行了討論.結果表明:如將夾雜物控制在堿度高的低熔點區域,則CaO的質量分數在30%左右,Al2O3在15%左右,MgO在10%左右,SiO2大于40%,且SiO2越多,低熔點區面積越大;如果將夾雜物成分控制在低堿度區域,則CaO在50%左右,Al2O3在45%左右,MgO的質量分數在5%左右,SiO2的質量分數小于5%.高堿度低熔點區的硫容量明顯小于低堿度低熔點區,在兩個低熔點區內,硫容量均隨堿度的增加而增加,且鈣鋁比越大,硫容量隨堿度增加的幅度越大;對于臨氫鋼12Cr2Mo1R來說,應將CaO-Al2O3-SiO2-MgO四元系夾雜物控制在高堿度低熔點區域,且堿度和鈣鋁比越大越好.

     

    Abstract: The low melting point zone of CaO-Al2O3-SiO2-MgO inclusions was analyzed and calculated by thermodynamic software FactSage. It is found that the low melting point zone can be divided into two different areas by alkalinity,and the sulfur capacity of the two areas was calculated and compared by using the KTH model. Then combined with the requirements of critical hydrogen 12Cr2Mo1 R on compositions and desulfurization,its applicable low-melting region was discussed. The results show that if inclusions are controlled at the high alkalinity zone,the contents(mass fraction) of CaO,Al2O3,and MgO are about 30%,15%,and 10%,respectively,the content of SiO2 should be more than 40%,and it has a lager low melting point zone with higher SiO2 content. If inclusions are controlled at the low alkalinity zone,the contents of CaO,Al2O3,and MgO are about 50%,45%,and 5%,respectively,the content of SiO2 should be less than 5%. The sulfur capacity of the high alkalinity area is significantly less than that of the low alkalinity area. In both low melting point areas,the sulfur capacity is increased with the increase of alkalinity. The bigger the calcium/aluminum ratio is,the greater the sulfur capacity is increased with the increase of alkalinity. For the critical hydrogen 12Cr2Mo1 R,CaO-Al2O3-SiO2-MgO inclusions should be controlled in the low melting point zone with high alkalinity,and higher alkalinity and calcium/aluminum ratio are better.

     

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