高碳铬铁氧化焙烧制备铬酸钾

来源期刊:中国有色金属学报(英文版)2015年第3期

论文作者:胡国荣 王家良 彭忠东 杜 柯 王伟刚 蒋庆来

文章页码:966 - 972

关键词:铬铁合金;铬酸钾;两步焙烧;铬渣;零排放

Key words:carbon ferrochrome; potassium chromate; two-stage roasting; chromium residue; zero-emission

摘    要:研究以高碳铬铁为原料在碳酸钾的存在下经氧化焙烧制备铬酸钾的反应过程。考察反应温度、反应时间和碱矿比(碳酸钾与高碳铬铁的摩尔比)对氧化焙烧过程的影响,并讨论反应的热力学与动力学。结果表明,反应温度和反应时间对高碳铬铁的氧化焙烧过程影响较大;反应机理随反应温度发生改变。采用两段焙烧法可以获得较好的反应效果,碳素铬铁中铬的转化率达到97.06%;此工艺产生的铬渣量极少,仅为所得产品质量的1/3左右,且铬渣中Fe含量高达55.04%,可用于碳还原法生产海绵铁,实现铬渣的彻底解毒和零排放。

Abstract: The oxidizing roasting process of carbon ferrochrome to prepare potassium chromate in the presence of potassium carbonate and air was investigated. The effects of reaction temperature, reaction time, mole ratio of potassium carbonate to carbon ferrochrome were studied, and thermodynamics and kinetics were also discussed. It was observed that the reaction temperature and reaction time had a significant influence on the roasting reaction of carbon ferrochrome. The reaction mechanism changed greatly as the temperature varied. A two-stage roasting process was favorable for the roasting reaction, and a chromium recovery rate of 97.06% was obtained through this two-stage roasting method. The chromium residue yielded from this method was only 1/3 of the product. Moreover, the component of Fe in the residue was as high as 55.04%. Therefore, it can be easily recovered to produce sponge iron, realizing complete detoxication and zero-emission of chromium residue.

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