首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Investigation of secondary zinc oxides as an alternative feed to the Skorpion Zinc process: Part 1 - leaching alternative zinc oxides
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Investigation of secondary zinc oxides as an alternative feed to the Skorpion Zinc process: Part 1 - leaching alternative zinc oxides

机译:氧化锌氧化锌中氧化锌的研究:第1部分 - 浸出替代氧化锌

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Skorpion Zinc processes zinc oxide ore using a sulphuric acid leaching, solvent extraction, and electrowinning process to produce Special High Grade zinc. The company investigated the possibility of supplementing ore with alternative zinc oxide sources to extend the life of mine and maximize zinc production. In part 1 of this two-part communication we report on experimental investigations to assess the technical feasibility of recovering zinc from electric arc furnace (EAF) dust, zinc dross, and zinc fume under the current Skorpion Zinc leaching conditions. The metal dissolution and acid consumption were determined at temperatures between 40 and 70X and pH values between 1.2 and 2.1 for slurries containing 20% solids.With the current Skorpion Zinc operating conditions of 50°C and pH 1.8, zinc dissolution from the EAF dust, zinc dross, and zinc fume was 93,96.9, and 98.5 %, respectively. The rate of zinc leaching from dross and from zinc fume decreased as the pH was increased to 1.5 and 1.8, respectively. The rate-determining step for zinc leaching from zinc dross gradually changed with an increase in pH from porous layer mass transport to chemical reaction and/or boundary layer mass transport. In the case of EAF dust, increasing the temperature to 70°C significantly reduced the zinc leaching rate due to the precipitation of calcium sulphate, which inhibited the zinc leaching reactions. The overall acid consumptions for all three alternative oxides investigated were below the current target consumption of 1.51 acid per ton of Zn in the feed. It would be technically feasible to use EAF dust, zinc dross, and/or zinc fume as supplementary feed to the Skorpion Zinc process.
机译:Skorpion锌处理氧化锌矿使用硫酸浸出,溶剂萃取和电陶宁工艺生产特殊的高等级锌。该公司调查了替代氧化锌源补充矿石的可能性,以延长矿山的寿命并最大化锌生产。在这两部分通信的第1部分中,我们报告了实验研究,以评估电弧炉(EAF)灰尘,锌渣和锌烟雾中回收锌的技术可行性。在40至70倍的温度下测定金属溶解和酸消耗,并且对于含有20%固体的浆料的浆料的温度确定为1.2和2.1的pH值。随着电流的含水锌运行条件为50℃和pH 1.8,来自EAF粉尘的锌溶解,锌渣和锌烟分别为93,96.9和98.5%。从渣滓和锌粉中浸出的锌速度分别随着pH值增加到1.5和1.8而降低。从锌渣中浸出的速率确定步骤随着从多孔层质量传输到化学反应和/或边界层大量传输的pH值逐渐变化。在EAF粉尘的情况下,由于硫酸钙的沉淀,将温度增加到70℃的温度显着降低了锌浸出率,这抑制了锌浸出反应。研究的所有三种替代氧化物的总酸消耗低于进料中每吨Zn的电流靶量1.51酸。使用EAF灰尘,锌渣和/或锌粉作为辅助锌过程,可以技术上可行。

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