Plasma Processing of Iron Ore

S. Samal, M. Mohanty, S. Mishra, B. Mishra
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Abstract

The depletion of high-grade ore minerals and the scarcity of fossil fuel reserves are challenging factors for metallurgical industries in the future. Also, extensive mining for increased steel demand results in the generation of fines often found unsuitable for use as direct feedstock for the production of metals and alloys. Apart from mines waste, the other major sources of fine minerals are leftover in charge burdens, sludges, and dust generated in the high-temperature process. Sludge and fines generated during beneficiation of ore add to this woe, as the outcomes of beneficiation plants for lean ores show better yield for fine particles. The utilization of lean ore and wastes in iron making requires wide research and adopting new advanced technologies for quality production with time-saving operations. The application of thermal plasma in mineral processing has several advantages that can overcome the current industrial metal extraction barriers. The present study demonstrates the thermal plasma for the processing of different iron-bearing minerals and its feasibility for metal extraction.
铁矿石等离子体加工
高品位矿石的枯竭和化石燃料储量的短缺是未来冶金工业面临的挑战因素。此外,为了增加对钢铁的需求而进行的广泛开采,往往产生了不适合用作生产金属和合金的直接原料的矿粉。除矿山废弃物外,细矿物的其他主要来源是剩余的炉料、污泥和高温过程中产生的粉尘。矿石选矿过程中产生的污泥和细粒更加剧了这一问题,因为精矿选矿厂的结果表明,细粒矿的产量更高。在炼铁中利用贫矿石和废物需要广泛的研究和采用新的先进技术,以实现高质量的生产和节省时间的操作。热等离子体在矿物加工中的应用有几个优点,可以克服目前工业金属提取的障碍。本研究证明了热等离子体处理不同含铁矿物及其金属提取的可行性。
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