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Evolution of ferronickel particles during the reduction of low-grade saprolitic laterite nickel ore by coal in the temperature range of 900–1250℃with the addition of CaO–CaF2–H3BO3
作者姓名:Zulfiadi Zulhan  Windu Shalat
作者单位:Metallurgical Engineering Department,Faculty of Mining and Petroleum Engineering,Bandung Institute of Technology,Indonesia
基金项目:The authors would like to thank the Program of Research,Community Service,and Innovation of the Institut TeknologiBandung
摘    要:The method of producing ferronickel at low temperature(1250–1400℃)has been applied since the 1950s at Nippon Yakin Kogyo,Oheyama Works,Japan.Limestone was used as an additive to adjust the slag composition for lowering the slag melting point.The ferronickel product was recovered by means of a magnetic separator from semi-molten slag and metal after water quenching.To increase the efficiency of magnetic separation,a large particle size of ferronickel is desired.Therefore,in this study,the influences of CaO,CaF2,and H3BO3 additives on the evolution of ferronickel particle at≤1250℃were investigated.The experiments were conducted at 900–1250℃with the addition of CaO,CaF2,and H3BO3.The reduction processes were carried out in a horizontal tube furnace for 2 h under argon atmosphere.At 1250℃,with the CaO addition of 10 wt%of the ore weight,ferronickel particles with size of 20μm were obtained.The ferronickel particle size increased to 165μm by adding 10 wt%CaO and 10 wt%CaF2.The addition of boric acid further increased the ferronickel particle size to 376μm,as shown by the experiments with the addition of 10 wt%CaO,10 wt%CaF2,and 10 wt%H3BO3.

关 键 词:saprolitic  laterite  nickel  ore  ferronickel  particle  LIME  FLUORITE  boric  acid

Evolution of ferronickel particles during the reduction of low-grade saprolitic laterite nickel ore by coal in the temperature range of 900–1250℃ with theaddition of CaO–CaF2–H3BO3
Zulfiadi Zulhan,Windu Shalat.Evolution of ferronickel particles during the reduction of low-grade saprolitic laterite nickel ore by coal in the temperature range of 900–1250℃ with theaddition of CaO–CaF2–H3BO3[J].International Journal of Minerals,Metallurgy and Materials,2021,28(4):612-620.
Authors:Zulfiadi Zulhan  Windu Shalat
Abstract:The method of producing ferronickel at low temperature (1250–1400℃) has been applied since the 1950s at Nippon Yakin Kogyo, Oheyama Works, Japan. Limestone was used as an additive to adjust the slag composition for lowering the slag melting point. The ferronickel product was recovered by means of a magnetic separator from semi-molten slag and metal after water quenching. To increase the efficiency of magnetic separation, a large particle size of ferronickel is desired. Therefore, in this study, the influences of CaO, CaF2, and H3BO3 additives on the evolution of ferronickel particle at ≤1250℃ were investigated. The experiments were conducted at 900–1250℃ with the addition of CaO, CaF2, and H3BO3. The reduction processes were carried out in a horizontal tube furnace for 2 h under argon atmosphere. At 1250℃, with the CaO addition of 10wt% of the ore weight, ferronickel particles with size of 20 μm were obtained. The ferronickel particle size increased to 165 μm by adding 10wt% CaO and 10wt% CaF2. The addition of boric acid further increased the ferronickel particle size to 376 μm, as shown by the experiments with the addition of 10wt% CaO, 10wt% CaF2, and 10wt% H3BO3.
Keywords:saprolitic laterite nickel ore  ferronickel particle  lime  fluorite  boric acid
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