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Formation of Ferrosilicon Alloy at 1550°C via Carbothermic Reduction of SiO_2 by Coal and Graphite: Implication for Rice Husk Ash Utilization

机译:通过煤和石墨通过SiO_2的碳热还原在1550℃下形成硅铁合金:对稻壳灰分利用的含义

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Ferrosilicon alloy has been commercially produced in an electric furnace at 1700 - 1750°C, using quartz as a silica source. With an aim to reduce production cost, rice husk ash (RHA) had been introduced to the process as a silica source. The present study reports an in-depth investigation on the ferrosilicon alloy formation at 1550°C via carbothermic reduction using RHA with coal and graphite. Blend A: RHA/Fe_2O_3/Coal and B: RHA/Fe_2O_3/Graphite were prepared according to the C/O molar ratio of 1/1. The well-mixed samples were compacted into a pellet and then heated at 1550°C in the tube furnace for 30 and 60 minutes while the argon flowing at the rate of 1 L/min. XRD and SEM results show that the bulk metal mainly composes of FeSi phase, while SiC and other slag phases adhere at the surface of the droplet. Characteristics of the carbonaceous materials, especially ash oxides content affect the kinetic of ferrosilicon formation. Silicon concentration in the produced metal droplets was measured using an ICP technique. For blend A, Si content in the metal was 18.3 wt% and 81.9 wt% after 30 and 60 minutes, respectively. While, Si recovery in the metal for blend B reached 88.4 wt% since 30 minutes. The experimental results show that the production of ferrosilicon alloy from RHA can be produced at 1550°C, which the temperature lower than that of the commercial method by 150-200°C. The finding in this research is beneficial for ferrosilicon and agricultural industries and thus promotes the sustainable steelmaking industry.
机译:使用石英作为二氧化硅源,硅铁合金已在1700-1750℃的电炉中商业生产。旨在减少生产成本,将稻壳灰(RHA)作为二氧化硅源引入该过程。本研究报告了使用RHA与煤和石墨的碳热还原对1550℃的硅铁合金形成的深入研究。混合A:rha / Fe_2O_3 /煤和B:根据1/1的C / O摩尔比制备RHA / Fe_2O_3 /石墨。将良好的混合样品压实成颗粒,然后在管炉中在1550℃下加热30和60分钟,同时以1L / min的速率流动。 XRD和SEM结果表明,散装金属主要组成FESI相,而SiC和其他炉渣相位粘附在液滴表面。碳质材料的特性,尤其是灰氧化物含量影响硅铁形成的动力学。使用ICP技术测量所生产的金属液滴中的硅浓度。对于混合物A,30至60分钟,金属中的Si含量为18.3wt%和81.9wt%。虽然30分钟以来,混合B金属中的Si回收达到88.4wt%。实验结果表明,从RHA的硅铁合金的生产可以在1550°C下生产,该温度低于商业方法的温度150-200℃。该研究的发现是有利于硅铁和农业产业的利益,从而促进可持续炼钢行业。

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