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基于重金属化学形态分布的两步浸出法,用于从冶金污泥中选择性浸出 Cd、Zn、Cu 和 Pb。

A two-step leaching method designed based on chemical fraction distribution of the heavy metals for selective leaching of Cd, Zn, Cu, and Pb from metallurgical sludge.

机构信息

Key Laboratory for Green Chemical Process of Ministry of Education, School of Chemical Engineering and Pharmacy, Wuhan Institute of Technology, 693 Xiongchu Avenue, Wuhan, Hubei, 430073, China.

School of Chemistry and Chemical Engineering, Sichuan University of Arts and Science, Dazhou, 635000, China.

出版信息

Environ Sci Pollut Res Int. 2018 Jan;25(2):1752-1765. doi: 10.1007/s11356-017-0471-7. Epub 2017 Nov 3.

Abstract

For selective leaching and highly effective recovery of heavy metals from a metallurgical sludge, a two-step leaching method was designed based on the distribution analysis of the chemical fractions of the loaded heavy metal. Hydrochloric acid (HCl) was used as a leaching agent in the first step to leach the relatively labile heavy metals and then ethylenediamine tetraacetic acid (EDTA) was applied to leach the residual metals according to their different fractional distribution. Using the two-step leaching method, 82.89% of Cd, 55.73% of Zn, 10.85% of Cu, and 0.25% of Pb were leached in the first step by 0.7 M HCl at a contact time of 240 min, and the leaching efficiencies for Cd, Zn, Cu, and Pb were elevated up to 99.76, 91.41, 71.85, and 94.06%, by subsequent treatment with 0.2 M EDTA at 480 min, respectively. Furthermore, HCl leaching induced fractional redistribution, which might increase the mobility of the remaining metals and then facilitate the following metal removal by EDTA. The facilitation was further confirmed by the comparison to the one-step leaching method with single HCl or single EDTA, respectively. These results suggested that the designed two-step leaching method by HCl and EDTA could be used for selective leaching and effective recovery of heavy metals from the metallurgical sludge or heavy metal-contaminated solid media.

摘要

为了从冶金污泥中选择性浸出和高效回收重金属,基于负载重金属的化学形态分布分析,设计了两步浸出法。在第一步中使用盐酸(HCl)作为浸出剂来浸出相对不稳定的重金属,然后根据其不同的形态分布应用乙二胺四乙酸(EDTA)来浸出残余金属。使用两步浸出法,在接触时间为 240 分钟时,用 0.7 M HCl 可浸出 82.89%的 Cd、55.73%的 Zn、10.85%的 Cu 和 0.25%的 Pb,随后用 0.2 M EDTA 在 480 分钟内处理,Cd、Zn、Cu 和 Pb 的浸出率分别提高到 99.76%、91.41%、71.85%和 94.06%。此外,HCl 浸出引起了形态的重新分布,这可能增加了剩余金属的迁移性,然后有利于 EDTA 随后去除金属。通过与单独使用 HCl 或 EDTA 的一步浸出法进行比较,进一步证实了这种促进作用。这些结果表明,设计的 HCl 和 EDTA 两步浸出法可用于从冶金污泥或重金属污染的固体介质中选择性浸出和有效回收重金属。

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