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Thermodynamic Analysis of Zinc Ferrite Decomposition in Electric Arc Furnace Dust by Lime

机译:石灰电弧炉粉尘锌铁氧体分解热力学分析

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Scientific basis of pyrometallurgical processing technology of dusts of electric steelmaking containing zinc ferrites was investigated. The thermodynamic analysis of the decomposition of zinc ferrite with lime was carried out. The analysis of calculated data has shown that, in order to decompose more than 90% ZnFe2O4, it is necessary to add no less than 46% CaO for dust, while to decompose more than 95% ZnFe2O4, no less than 60% CaO is necessary. The results of the calculation were verified experimentally using a laboratory furnace. The experimental calcination of dust in air with the addition of lime in an amount of 60% of the dust weight at 1000A degrees C with a holding time of 4 h confirmed that the decomposition of zinc ferrite with calcium oxide with the formation of zinc oxide and dicalcium ferrite occurs. In addition, sublimates were also formed in an amount of 50 kg per 1 t of dust containing 29% of lead and 15% of zinc. Dust calcination with lime can be applied to transform zinc from ferrite into a soluble oxide form. Intermediate products for the recovery of zinc and lead can be obtained by the calcination. After zinc leaching, it is possible to obtain an iron-containing product, which can be used in ferrous metallurgy. This approach has a series of process advantages compared with the well-known Waelz technology. In particular, calcination with lime requires lower temperature (1000A degrees C) than the known technology (1250A degrees C), it eliminates the second stage of the Waelz treatment necessary to purify zinc oxide fed for leaching from halides, considerably reduces coke consumption, and significantly simplifies gas cleaning from dust due to a decrease in the amount of sublimates by a factor of 6-8.
机译:研究了含锌铁氧体锌制造灰尘灰尘灰尘加工技术的科学依据。进行了与石灰锌铁素体分解的热力学分析。计算数据的分析表明,为了分解超过90%的ZnFe2O4,必须为灰尘添加不小于46%的CaO,而分解超过95%的ZnFe2O4,则不得不小于60%CaO是必要的。使用实验室炉进行实验验证计算结果。在空气中的实验煅烧在1000A℃的含量为4小时的粉尘中的60%的粉尘中的灰尘的煅烧确认了氧化锌与氧化钙的锌铁素体的分解和氧化锌和发生二甲酸酯。此外,升华酸辛酸尼物也以每1吨含有29%的铅和15%的锌的粉末的50kg。可以用石灰煅烧用石灰煅烧以将锌从铁素体转变为可溶性氧化物形式。用于回收锌和铅的中间产品可以通过煅烧获得。在锌浸出后,可以获得可用于黑色冶金的含铁产品。与众所周知的Waelz技术相比,这种方法具有一系列过程优势。特别地,用石灰的煅烧需要比已知技术(1250A℃)更低的温度(1000A℃),它消除了纯化氧化锌从卤化物浸出的氧化锌的第二阶段,显着降低了焦炭消耗,并且由于升华量的降低,显着简化了灰尘的气体清洁量为6-8的倍率。

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