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Thermodynamic behavior and morphology of impurities in metallurgical grade silicon in process of O_2 blowing被引量:7
2013年
Gas blowing is a valid method to remove the impurities from metallurgical grade silicon(MG-Si) melt.The thermodynamic behavior of impurities Fe,Al,Ca,Ti,Cu,C,B and P in MG-Si was studied in the process of O2 blowing.The removal efficiencies of impurities in MG-Si were investigated using O2 blowing in ladle.It is found that the removal efficiencies are higher than 90% for Ca and Al and nearly 50% for B and Ti.The morphology of inclusions was analyzed and the phases Al3Ni,NiSi2 and Al3Ni were confirmed in MG-Si by X-ray diffraction.It was found that SiB4 exists in Si?B binary system.The chemical composition of inclusions in MG-Si before and after refining was analyzed by SEM-EDS.It is found that the amount of white inclusion reduces for the removal of most Al and Ca in the forms of molten slag inclusion and the contents of Fe,Ni and Mn in inclusion increase for their inertia in silicon melt with O2 blowing.
伍继君马文会李彦龙杨斌刘大春戴永年
关键词:THERMODYNAMICSIMPURITIESINCLUSION
冶金级硅造渣精炼除硼动力学研究
太阳能级多晶硅是光伏发电的基本材料,冶金法将逐步取代改良西门子法和流化床法成为多晶硅材料生产的主要技术。然而,冶金法制备太阳能级多晶硅还有一些关键技术没有突破,硅中B、P、C、O等非金属杂质的去除难题是该技术的主要瓶颈。...
李彦龙
关键词:动力学传质系数
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Boron removal in purifying metallurgical grade silicon by CaO-SiO_2 slag refining被引量:9
2014年
Boron removal from metallurgical grade silicon (MG-Si) using a calcium silicate slag was studied. The results show that it is impossible basically to remove boron using a pure SiO2 refining. The oxidizing ability of CaO-SiO2 slag for boron removal was characterized by establishing the thermodynamic relationship between the distribution coefficient of boron (LB) and the activities of SiO2 and CaO. The experimental results show that the distribution coefficient and the removal efficiency of boron are greatly improved with the increase of CaO proportion in the slag. The maximal value of LB reaches 1.57 with a slag composition of 60%CaO-40%SiO2 (mass fraction). The boron content in the refined silicon is reduced from 18×10^-6 to 1.8×10^-6 using slag refining at 1600 ℃ for 3 h with a CaO-SiO2/MG-Si ratio of 2.5, and the removal efficiency of boron reaches 90%.
伍继君李彦龙马文会魏奎先杨斌戴永年
关键词:THERMODYNAMICS
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