柠檬酸溶液在炼钢粉尘中选择性脱除锌的应用

IF 0.9 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING Journal of Mining and Metallurgy Section B-Metallurgy Pub Date : 2021-01-01 DOI:10.2298/JMMB200630012G
Krzysztof Gargul, P. Handzlik, P. Palimąka, A. Pawlik
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引用次数: 1

摘要

炼钢粉尘是炼铁企业产生的废弃物之一。这种废料主要是电弧炉产生的副产品。粉尘中的锌含量不同,取决于炉内处理的炉料。回收炼钢粉尘的基本技术是Waelz法,但它需要大量的减速机,产生大量的废物,需要储存。本研究的第一阶段是分析炼钢粉尘在大气条件下暴露是否安全。为了验证这一课题,在TCLP和EN-12457-2的标准中,暴露于两种浸出的粉尘。提取的元素量太大,这就是为什么炼钢粉尘必须作为危险废物处理。在柠檬酸溶液中浸出分为四个系列。第一个是用来确定大多数选择性锌浸出的时间和温度。接着对柠檬酸浓度、液固比(l/s)和搅拌速度三个浸出参数进行了优化。实验结果表明,选择性浸出的最佳条件为:温度50℃,浸出时间60 min,柠檬酸浓度0.5 mol/dm3, l/s比为10,搅拌转速250 rpm。
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The application of citric acid solutions for selective removal of zinc from steelmaking dust
Steelmaking dust is one of the wastes which are produced by ironworks. This kind of waste is a byproduct made mainly in electric arc furnace. Zinc content in dust is different and depends on the charge processed in the furnace. The basic technology used for recycling steelmaking dust is Waelz process however it requires a large amount of reducer and generates a lot of waste which need to be stored. First stage in this study was to analyze if steelmaking dust is safe to be exposed for atmospheric conditions. To verify this subject the dust exposed for two kinds of leaching, in standards of TCLP and EN-12457-2. The amount of extracted elements was too large that's why steelmaking dust must be treated as dangerous waste. Leaching in citric acid solutions was divided in four series. The first one was set to determine the time and temperature for most selective zinc leaching. Next series optimized three leaching parameters which were: citric acid concentration, liquid to solid phase ratio (l/s), and the stirring speed. Performed experiments showed the optimal conditions for selective leaching: temperature of 50 ?C, leaching time of 60 minutes, citric acid concentration of 0.5 mol/dm3, l/s ratio of 10, and stirring speed of 250 rpm.
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来源期刊
CiteScore
2.00
自引率
40.00%
发文量
19
审稿时长
2 months
期刊介绍: University of Belgrade, Technical Faculty in Bor, has been publishing the journal called Journal of Mining and Metallurgy since 1965 and in 1997 it was divided in two independent journals dealing with mining and metallurgy separately. Since 2009 Journal of Mining and Metallurgy, Section B: Metallurgy has been accepted in Science Citation Index Expanded. Journal of Mining and Metallurgy, Section B: Metallurgy presents an international medium for the publication of contributions on original research which reflect the new progresses in theory and practice of metallurgy. The Journal covers the latest research in all aspects of metallurgy including hydrometallurgy, pyrometallurgy, electrometallurgy, transport phenomena, process control, solidification, mechanical working, solid state reactions, materials processing, surface treatment and relationships among processing, structure, and properties of materials.
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