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Utilization of waste coconut shells in the reduction roasting of overburden from iron ore mines

机译:废椰子壳在铁矿石矿山覆盖覆盖的减少烘焙中的利用

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摘要

The reduction of iron ore using biomass-based reductants has opened up a new chapter because of its contribution to energy conservation and emission reduction. In this connection, the application of waste coconut shells (CS) as the reductant in the reduction roasting-magnetic separation of an iron ore overburden sample is explored. Characterization studies on the overburden having 49% Fe suggest that the sample is mostly a goethitic ore containing kaolinite as the major gangue mineral. A concentrate with 63.2% Fe at an iron recovery of 66.2% has been obtained from the low-intensity magnetic separation of the overburden roasted at a temperature of 800 degrees C, time of 60 min and a CS to feed ratio of 0.2. Characterization studies indicate the formation of magnetite and hematite under these optimum conditions, whereas roasting at a temperature of 900 degrees C and a reductant to feed ratio of 0.3 is found to form feebly magnetic phases like wustite, fayalite and complex iron aluminosilicates resulting in poor iron recovery. The thermo-gravimetric analysis studies explain the disintegration of the biomass and reduction of the iron ore thereby validating the reduction sequence as predicted using the characterization studies. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于其对节能减排的贡献,使用基于生物质的还原剂的铁矿石的减少开辟了新的篇章。在这方面,探讨了废椰子壳(CS)作为还原剂中的还原剂中的铁矿石覆盖物样品的还原剂的应用。具有49%Fe的覆盖层的表征研究表明,样品主要是含有高岭石的鹅石灰作为主要煤矸石矿物质。在66.2%的铁恢复的浓缩物中,从800℃,60分钟的温度烘烤的低强度磁分离,含量为60分钟,进给比为0.2,得到了6.2%的浓缩物。表征研究表明,在这些最佳条件下形成磁铁矿和赤铁矿,而在900℃的温度下烘烤并发现进料比为0.3的进料比,以形成诸如沃酸盐,配铝酸盐和复杂的铁硅酸盐,导致铁硅酸盐恢复。热重分析研究解释了生物质的崩解和铁矿石的还原,从而验证使用表征研究预测的还原序列。 (c)2019年Elsevier B.V.保留所有权利。

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