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Selective Recovery of Zinc from Metallurgical Waste Materials from Processing Zinc and Lead Ores

机译:从加工锌和铅矿石中的冶金废料中选择性回收锌

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摘要

A method for processing of metallurgical waste materials (chemically defined as sulfur-bearing zinc-ferric materials) produced by plants processing zinc ores and their concentrates is proposed. The method proposed is a combination of pyro- and hydrometallurgical treatments of the waste material. The crucial steps in the developed method include: roasting the material at 450 °C to generate sulfur dioxide (SO2), absorption of SO2 in an aqueous system to form sulfuric acid (IV), carbothermic decomposition of zinc ferrite compounds, and leaching of zinc from the roasted material using sulfuric (IV) acid. The method allows one to extract up to 40% of zinc from the waste material and, consequently, to generate a fraction of material with substantially higher content of iron oxides. The proposed method takes advantage of the presence of sulfur in the processed material which upon roasting is converted to sulfuric acid (IV)—a leaching agent for selective extraction of zinc. The properly adjusted pH of the aqueous medium in which the leaching process is carried out is the key factor determining the quantitative and selective separation of zinc. If the amount of sulfur in the processed material is insufficient, it may be supplemented by adding sulfuric acid (VI) to adjust the pH. The method proposed was tested at a laboratory scale and quarter industrial scale using the real samples taken from stockpiles in the vicinity of the plant processing zinc and lead ores in Poland. It may also work for any zinc-ferric materials from various sources.
机译:提出了一种通过处理锌矿石及其精矿的工厂生产的冶金废料(化学上定义为含硫的锌铁材料)的处理方法。提出的方法是对废料进行火法和湿法冶金处理的组合。所开发方法的关键步骤包括:在450°C的温度下焙烧材料以生成二氧化硫(SO2),在水系统中吸收SO2形成硫酸(IV),铁氧体锌化合物的碳热分解以及锌的浸出用硫酸(IV)从烧烤材料中提取。该方法使人们可以从废料中提取多达40%的锌,因此可以产生一部分氧化铁含量更高的材料。所提出的方法利用了加工材料中硫的存在,将其焙烧后转化为硫酸(IV)-一种用于选择性提取锌的浸出剂。在其中进行浸出过程的水性介质的适当调节的pH是决定锌定量和选择性分离的关键因素。如果加工材料中的硫含量不足,可通过添加硫酸(VI)来调节pH值进行补充。所建议的方法已在实验室规模和四分之一工业规模下进行了测试,使用了从波兰加工锌和铅矿石的工厂附近的库存中采集的真实样品。它也可以用于各种来源的任何锌铁材料。

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