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首页> 外文期刊>Minerals Engineering >Electrochemical enhanced oxidative decomposition of chromite ore in highly concentrated KOH solution
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Electrochemical enhanced oxidative decomposition of chromite ore in highly concentrated KOH solution

机译:高浓度KOH溶液中铬铁矿矿石的电化学增强氧化分解

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摘要

A novel method which introduces an electrochemical field to enhance the oxidative decomposition of chromite in a KOH sub-molten salt medium was proposed and proven to be feasible and efficient. Under optimal reaction conditions (slot current density 750 A/m~2, alkali concentration 60 wt.%, reaction temperature 150 ℃, alkali-to-ore mass ratio 6:1, and particle size<200 mesh), the extraction rate of chromium reached 99%, after reacting for 480 min. In comparison with the current liquid-phase oxidation technologies, the reaction temperature in the new approach is 150-250 ℃ lower, and the alkali concentration of the reaction medium is lower by more than 20%, showing substantial advantages in terms of energy efficiency, equipment corrosion alleviation and prospects for industrial application. The reaction kinetics study shows that the extraction process under optimal reaction conditions is jointly governed by surface chemical reaction and solid product layer diffusion with the apparent activation energy calculated to be 17.56 kJ/mol.
机译:提出了一种引入电化学场以增强亚硝酸钾盐溶液中亚铬酸盐氧化分解的新方法,并被证明是可行和有效的。在最佳反应条件下(槽电流密度为750 A / m〜2,碱浓度为60 wt。%,反应温度为150℃,碱与矿石的质量比为6:1,粒径小于200目),萃取的速率反应480分钟后,铬达到99%。与目前的液相氧化技术相比,新方法的反应温度降低了150-250℃,反应介质的碱浓度降低了20%以上,在能源效率方面显示出明显的优势,减轻设备腐蚀及工业应用前景。反应动力学研究表明,在最佳反应条件下,萃取过程受表面化学反应和固体产物层扩散共同控制,其表观活化能为17.56 kJ / mol。

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