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Thermodynamic Modeling of the Solid State Carbothermic Reduction of Chromite Ore

机译:铬铁矿矿石固态碳热还原的热力学建模

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Chromium has a wide range of applications, including as an alloy addition in various steels and also as a corrosion resistance coating. Carbothermal reduction of chromite ore (FeCr_2O_4) in a submerged arc furnace is an important industrial process for extracting chromium, but the energy consumption is excessive. It is suggested that one area for future research is the low temperature carbothermic solid state reduction of chromite to produce an intermediate product, which can subsequently be upgraded to ferrochromium. In this regard, a thermodynamic model has been developed to investigate this process and the effects of temperature, carbon additions and ore composition on the recovery of chromium and the grade of the ferrochromium, have been studied. Further development of the model may allow it to be applied to the simulation of other processes for the recovery of chromium from chromite ores.
机译:铬具有各种应用,包括作为各种钢的合金添加,也是耐腐蚀性涂层。浸没式弧形炉中铬铁矿矿石(FECR_2O_4)的铬铁矿石(FECR_2O_4)是提取铬的重要工业过程,但能量消耗过多。建议未来研究的一个领域是铬铁矿的低温碳热固态,以产生中间产物,随后可以升级至铁铬。在这方面,已经开发了一种热力学模型来研究该方法,并研究了温度,碳添加和矿石组合物对铬的回收率和铁铬等级的影响。该模型的进一步发展可以允许它应用于从铬铁矿矿石中恢复铬的其他方法的模拟。

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