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Zinc recovery from metallurgical slag and dust by coordination leaching in NH3–CH3COONH4–H2O system

机译:NH3-CH3COONH4-H2O系统中协同浸出从冶金炉渣和粉尘中回收锌

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摘要

Metallurgical slag and dust (MSD) from lead and zinc smelting, steel dust and galvanized steel scrap are important secondary sources of zinc and other valuable metals. This paper describes the production feasibility and rationality of a cleaner zinc recovery process using MSD and a hydrometallurgical method. It was found that the addition of CH3COONH4 to a NH3–H2O system promotes zinc extraction, and 83.76% of zinc could be dissolved and recovered from the MSD under the following conditions: total ammonia concentration of 5 mol l−1, stirring speed of 300 r.p.m., ammonia/ammonium ratio of 1 : 1, solid/liquid ratio of 1 : 5, leaching temperature of 25°C and a leaching time of 60 min. A leaching kinetic study indicates that the leaching process is controlled by the diffusion and interface transfer and that the reaction apparent activation energy is 22.66 kJ mol−1. Fourier transform infrared spectroscopy and electrospray ionization mass spectrometry analysis showed that zinc can combine with the carboxylate anion to form Zn complexes such as [Zn2(Ac)3(NH3)2]+. Zn2SiO4, ZnS and ZnFe2O4 in NH3–CH3COONH4–H2O system did not disappear according to X-ray diffraction analysis for leaching residue.
机译:铅和锌冶炼产生的冶金渣和粉尘(MSD),钢粉和镀锌废钢是锌和其他贵重金属的重要次要来源。本文介绍了使用MSD和湿法冶金技术清洁锌回收工艺的生产可行性和合理性。研究发现,在以下条件下,总氨浓度为5 mol l -1 时,将CH3COONH4添加到NH3-H2O系统中可以促进锌的萃取,并且可以溶解83.76%的锌并从MSD中回收。 sup>,搅拌速度为300 ofrpm,氨/铵比为1:1,固/液比为1:5,浸出温度为25℃,浸出时间为60 min。浸出动力学研究表明,浸出过程受扩散和界面转移控制,反应表观活化能为22.66 kJ mol -1 。傅里叶变换红外光谱和电喷雾电离质谱分析表明,锌可以与羧酸根阴离子结合形成锌配合物,如[Zn2(Ac)3(NH3)2] + 。 X射线衍射分析表明,NH3-CH3COONH4-H2O体系中的Zn2SiO4,ZnS和ZnFe2O4不会消失。

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