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Josephtown Smelter St. Joe Lead’s Electrothermic Zinc Plant
JOM
◽
10.1007/bf03397195
◽
1965
◽
Vol 17
(12)
◽
pp. 1351-1352
Author(s):
Carleton C. Long
Keyword(s):
Zinc Plant
Download Full-text
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References
Flow-through cell for continual on-line monitoring of cadmium, copper, antimony, and lead by anodic stripping voltammetry in highly dense zinc plant electrolyte
Analytical Chemistry
◽
10.1021/ac00172a026
◽
1988
◽
Vol 60
(21)
◽
pp. 2445-2448
◽
Cited By ~ 18
Author(s):
A. M. Bond
◽
R. W. Knight
◽
O. M. G. Newman
Keyword(s):
Anodic Stripping Voltammetry
◽
Stripping Voltammetry
◽
Zinc Plant
◽
Anodic Stripping
◽
On Line
◽
Flow Through
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Pb Recycling Through Leaching, Precipitation, and Cementation from Zinc Plant Residue
Journal of Sustainable Metallurgy
◽
10.1007/s40831-021-00338-2
◽
2021
◽
Vol 7
(1)
◽
pp. 291-299
Author(s):
Behrouz Taheri
◽
Mahdi Gharabaghi
◽
Sajjad Aghazadeh
Keyword(s):
Plant Residue
◽
Zinc Plant
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Separation and Recovery of Zinc and Cobalt from Zinc Plant Residue by Alkali Leaching
Energy Technology 2020: Recycling, Carbon Dioxide Management, and Other Technologies - The Minerals, Metals & Materials Series
◽
10.1007/978-3-030-36830-2_38
◽
2020
◽
pp. 397-404
Author(s):
Yangbo Geng
◽
Guihong Han
◽
Yukun Huang
◽
Zuoqi Ma
◽
Yanfang Huang
◽
...
Keyword(s):
Plant Residue
◽
Zinc Plant
◽
Alkali Leaching
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Determination of the Optimum Conditions for the Leaching of Lead from Zinc Plant Residues in NaCl–H2SO4–Ca(OH)2 Media by the Taguchi Method
Industrial & Engineering Chemistry Research
◽
10.1021/ie202571x
◽
2012
◽
Vol 51
(10)
◽
pp. 3887-3894
◽
Cited By ~ 16
Author(s):
Bahram Behnajady
◽
Javad Moghaddam
◽
Mohammad A. Behnajady
◽
Fereshteh Rashchi
Keyword(s):
Taguchi Method
◽
Plant Residues
◽
Optimum Conditions
◽
Zinc Plant
Download Full-text
Reductive leaching of zinc, cobalt and manganese from zinc plant residue
Hydrometallurgy
◽
10.1016/j.hydromet.2016.02.003
◽
2016
◽
Vol 161
◽
pp. 185-192
◽
Cited By ~ 14
Author(s):
A. Fattahi
◽
F. Rashchi
◽
E. Abkhoshk
Keyword(s):
Plant Residue
◽
Zinc Plant
◽
Reductive Leaching
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Improved technology for In, Ge and Ga recovery in an electrolytic zinc plant
EMC ’91: Non-Ferrous Metallurgy—Present and Future
◽
10.1007/978-94-011-3684-6_33
◽
1991
◽
pp. 305-309
Author(s):
Tian Runcang
Keyword(s):
Electrolytic Zinc
◽
Zinc Plant
◽
Improved Technology
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Treatment of Secondary Zinc Oxides for Use in an Electrolytic Zinc Plant
Recycling of Metals and Engineercd Materials
◽
10.1002/9781118788073.ch35
◽
2013
◽
pp. 409-420
Author(s):
S. S. Chabot
◽
S. E. James
Keyword(s):
Electrolytic Zinc
◽
Zinc Plant
◽
Zinc Oxides
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Study on extraction and separation of Ni and Zn using [bmim][PF6] IL as selective extractant from nitric acid solution obtained from zinc plant residue leaching
Arabian Journal of Chemistry
◽
10.1016/j.arabjc.2020.04.019
◽
2020
◽
Vol 13
(6)
◽
pp. 5821-5831
Author(s):
Masumeh Mohammadzadeh
◽
Hamidreza Bagheri
◽
Sattar Ghader
Keyword(s):
Nitric Acid
◽
Acid Solution
◽
Nitric Acid Solution
◽
Plant Residue
◽
Zinc Plant
◽
Extraction And Separation
Download Full-text
Silver recovery from zinc plant residues by flotation
Mining Metallurgy & Exploration
◽
10.1007/bf03402930
◽
1991
◽
Vol 8
(1)
◽
pp. 43-47
Author(s):
J. Y. Kim
◽
L. Rosato
◽
R. W. Stanley
Keyword(s):
Plant Residues
◽
Silver Recovery
◽
Zinc Plant
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Basic Leaching Behavior of Mechanically Activated Zinc Plant Residue
Transactions of the Indian Institute of Metals
◽
10.1007/s12666-019-01687-z
◽
2019
◽
Vol 72
(9)
◽
pp. 2359-2364
Author(s):
M. Deniz Turan
◽
H. Soner Altundoğan
◽
Mustafa Boyrazlı
◽
Z. Abidin Sarı
◽
Hasan Nizamoğlu
◽
...
Keyword(s):
Plant Residue
◽
Leaching Behavior
◽
Zinc Plant
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