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采用碘化物溶液体系从高含汞冶炼废渣中选择性回收汞。

Selective recovery of mercury from high mercury-containing smelting wastes using an iodide solution system.

机构信息

School of Metallurgy and Chemical Engineering, JiangXi University of Science and Technology, 86 Hongqi Road, Ganzhou 341000, China.

School of Metallurgy and Environment, Central South University, 93 Lushan Road, Changsha 410083, China.

出版信息

J Hazard Mater. 2019 Feb 5;363:179-186. doi: 10.1016/j.jhazmat.2018.09.001. Epub 2018 Sep 10.

DOI:10.1016/j.jhazmat.2018.09.001
PMID:30308356
Abstract

The mercury resources recovery and safe disposal of mercury-containing waste is an urgent problem. In this study, a new method using an iodide solution system was proposed to selectively recover mercury from high mercury-containing smelting wastes. The mercury leaching efficiency, yields, leaching kinetics and thermodynamics were researched. The major factors which affect mercury leaching efficiency including iodide concentration, oxidant, pH and temperature were evaluated. Over 97% and 93% of mercury can be efficiently leached from wastewater treatment sludge (W-S) and acid sludge (A-S). After leaching, the mercury concentration during leaching toxicity test is under the limits set for hazardous waste. Additionally, the electrolytic technology can efficiently recover mercury from leachate in the form of elemental mercury, and the leachate after electrolytic can be reused for mercury leaching. The mercury leaching kinetics follows the shrinking core diffusion model and is controlled by solid product diffusion. The mechanism research shows the leaching efficiency was strongly dependent on the distribution of mercury species in smelting waste. The consequence on mercury leaching and recovery could provide nonferrous smelters with a practical and yet easy-to-adopt perspective to reduce the risk of mercury contamination and selectively recover mercury resources from mercury-containing smelting wastes.

摘要

从高含汞冶炼废渣中选择性回收汞的新工艺研究。采用碘化物溶液体系,从高含汞冶炼废渣中选择性回收汞。研究了汞浸出效率、产率、浸出动力学和热力学。评价了影响汞浸出效率的主要因素,包括碘化物浓度、氧化剂、pH 值和温度。废水处理污泥(W-S)和酸泥(A-S)中超过 97%和 93%的汞可以被有效浸出。浸出后,浸出毒性试验中的汞浓度低于危险废物规定的限值。此外,电解技术可以有效地以金属汞的形式从浸出液中回收汞,电解后的浸出液可重复用于汞浸出。汞浸出动力学遵循收缩核扩散模型,由固体产物扩散控制。机理研究表明,浸出效率强烈依赖于冶炼废渣中汞形态的分布。汞浸出和回收的结果为有色金属冶炼厂提供了一种实用且易于采用的方法,以降低汞污染的风险,并从含汞冶炼废渣中选择性回收汞资源。

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