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HERO ID
7118382
Reference Type
Journal Article
Title
Two-stage leaching of zinc and copper from arsenic-rich copper smelting hazardous dusts after alkali leaching of arsenic
Author(s)
Zhang, Y; Jin, B; Huang, Y; Song, Q; Wang, C; ,
Year
2019
Is Peer Reviewed?
1
Journal
Separation and Purification Technology
ISSN:
1383-5866
Publisher
ELSEVIER SCIENCE BV
Location
AMSTERDAM
Volume
220
Page Numbers
250-258
DOI
10.1016/j.seppur.2019.03.067
Web of Science Id
WOS:000466250100028
Abstract
In order to efficiently recover zinc and copper from arsenic-rich copper smelting hazardous dusts after alkali leaching of arsenic, an optimum two-stage leaching process by using sulfuric acid media was developed in this study. The leaching behaviors of zinc, copper, arsenic and iron under different experimental conditions (such as: leaching time, temperature, sulfuric acid concentration and oxidant addition), were studied systematically. The results indicated that 98.4% zinc and 96.01% copper were leached using the first-stage of neutral leaching under conditions including final pH 5.0 +/- 0.1, time 1 h, temperature 90 degrees C and the second-stage of sulfuric acid leaching under conditions including initial sulfuric acid concentration 190 g/L, leaching time 2 h, temperature 90 degrees C and 1.4 times oxidant addition. Meanwhile, 99.58% lead and 98.93% bismuth were remained in the sulfuric acid leaching residues which can be recovered by pyrometallurgical processes. The leaching behavior relationships among copper, zinc, arsenic and iron were also modeled. Results indicated that the ferric ion improved copper and zinc leaching. SEM study demonstrated that the leached surface was corroded, and EDS and XRD results indicated that zinc and copper oxides were disappeared during leaching while lead oxide was transformed into anglesite, and tin oxide was remained in the residues.
Keywords
Arsenic-rich copper smelting hazardous dusts; Leaching behavior; Zinc; Copper; Sulfuric acid media
Tags
IRIS
•
Inorganic Arsenic (7440-38-2) [Final 2025]
Lit Search Updates Jan 2019 to August 2022
WOS
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