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从废 Zn-C 电池粉中回收锰和锌:溶剂萃取技术从浸出液中分离 Mn(II)和 Zn(II)。

Recovery of manganese and zinc from waste Zn-C cell powder: Mutual separation of Mn(II) and Zn(II) from leach liquor by solvent extraction technique.

机构信息

Department of Applied Chemistry and Chemical Engineering, Rajshahi University, Rajshahi 6205, Bangladesh.

Department of Applied Chemistry and Chemical Engineering, Rajshahi University, Rajshahi 6205, Bangladesh.

出版信息

Waste Manag. 2016 May;51:149-156. doi: 10.1016/j.wasman.2015.09.041. Epub 2015 Oct 9.

Abstract

Acidic organophosphorous extractants were screened for the mutual separation of Mn(II) and Zn(II), in a leach solution of waste Zn-C cell powder. This was done using a 2mol/L H2SO4 solution containing 2g/L glucose. Extraction characteristics of both metal ions in this mixture have been examined as functions of equilibrium pH. Although tech. and anal. grade D2EHPA are not so effective for the separation, PC88A, Cyanex 272, Cyanex 302 and Cyanex 301 are all promising for this purpose. Strippings of Mn(II) and Zn(II) from the extracted organic phases have been examined, using 0.25, 0.50 and 1mol/L H2SO4; and 1mol/L HCl, HNO3 and HClO4 at different phase ratios. H2SO4 appears to be the best stripping agent. A 1mol/L H2SO4 solution strips almost 100% of target metal ions in 10min, regardless of the extractant used. As ΔpH1/2=2.75 and as the max. separation factor (β)=1793 for Cyanex 302 at pH(eq)=4.0, a flow sheet has been developed for their mutual separations. Finally, classical precipitation methods have been adopted to obtain MnS and ZnS, which can be easily oxidized to MnO2 and ZnO, respectively.

摘要

酸性膦萃取剂被筛选用于从废 Zn-C 电池粉末的浸出液中分离 Mn(II)和 Zn(II),使用的是含有 2g/L 葡萄糖的 2mol/L H2SO4 溶液。在这种混合物中,两种金属离子的萃取特性被作为平衡 pH 的函数进行了考察。尽管技术级和分析级 D2EHPA 对分离效果不那么理想,但 PC88A、Cyanex 272、Cyanex 302 和 Cyanex 301 对此都很有前景。用 0.25、0.50 和 1mol/L H2SO4 以及不同相比的 1mol/L HCl、HNO3 和 HClO4 对从萃取有机相中对 Mn(II)和 Zn(II)进行了反萃研究。H2SO4 似乎是最好的反萃剂。无论使用哪种萃取剂,1mol/L H2SO4 溶液在 10min 内几乎可以完全反萃目标金属离子。由于 ΔpH1/2=2.75,并且在 pH(eq)=4.0 时 Cyanex 302 的最大分离因子(β)=1793,因此开发了一种用于它们相互分离的流程。最后,采用经典沉淀法分别获得 MnS 和 ZnS,它们可分别容易地氧化为 MnO2 和 ZnO。

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