Research Progress on Wet Recovery of Zinc Metal from Blast Furnace Smelting Dust
As an important secondary resource of the iron and steel industry, blast furnace smelting dust is rich in valuable metals such as zinc and also contains potentially toxic elements. Its efficient and clean recycling is economically valuable and contributes to environmental protection. Hydrometallurgy...
| Published in: | 能源环境保护 |
|---|---|
| Main Authors: | Lijuan JIA, Shaoxiang YANG, Linjie YANG, Jiayu FENG, Shuo CUI, Fang WANG, Yanzhang LIU, Ping NING |
| Format: | Article |
| Language: | Chinese |
| Published: |
Editorial Office of Energy Environmental Protection
2025-08-01
|
| Subjects: | |
| Online Access: | https://doi.org/10.20078/j.eep.20250604 |
Similar Items
Synthesis and characterization of tenorite (CuO) nanoparticles from smelting furnace dust(SFD)
by: Darezereshki E., et al.
Published: (2013-01-01)
by: Darezereshki E., et al.
Published: (2013-01-01)
Study on the strength of iron and steel smelting waste blast furnace slag
by: H. Z. Yang, et al.
Published: (2024-01-01)
by: H. Z. Yang, et al.
Published: (2024-01-01)
Recovery of zinc from blast furnace dust via ultrasonic-enhanced crotonic acid leaching: Leaching kinetics and mechanism
by: Long Wang, et al.
Published: (2025-09-01)
by: Long Wang, et al.
Published: (2025-09-01)
Reduction Smelting of the Waelz Slag from Electric Arc Furnace Dust Processing: An Experimental Study
by: Pavel Grudinsky, et al.
Published: (2023-02-01)
by: Pavel Grudinsky, et al.
Published: (2023-02-01)
CFD Analysis of Low-Cost Solutions to Minimize Gas and Dust Emissions during the Emergency Opening of Blast Furnace Bleeders
by: Marco Boscolo, et al.
Published: (2022-02-01)
by: Marco Boscolo, et al.
Published: (2022-02-01)
Evaluation of Physical and Mechanical Properties of Coating Mortar with Partial Replacement of Sand by Blast Furnace Flue Dust
by: Manoela da Silva Carvalho, et al.
Published: (2025-02-01)
by: Manoela da Silva Carvalho, et al.
Published: (2025-02-01)
An Analysis of Long-Process Ironmaking in a Reduction Smelting Furnace with Hydrogen-Enriched Conditions
by: Haifeng Li, et al.
Published: (2023-10-01)
by: Haifeng Li, et al.
Published: (2023-10-01)
Material Balance in a Blast Furnace, when Replacing Coke with Coal Dust
by: Adrian VASILIU
Published: (2017-12-01)
by: Adrian VASILIU
Published: (2017-12-01)
Synthesis of Micro-Electrolysis Composite Materials from Blast Furnace Dust and Application into Organic Pollutant Degradation
by: Xiangrong Zeng, et al.
Published: (2022-12-01)
by: Xiangrong Zeng, et al.
Published: (2022-12-01)
Susceptibility to moisture damage in asphalt mixes with blast furnace dust as aggregate
by: Ricardo Ochoa-Díaz, et al.
Published: (2024-06-01)
by: Ricardo Ochoa-Díaz, et al.
Published: (2024-06-01)
Recent Progress in Electric Furnace Titanium Slag Processing and Utilization: A Review
by: Jianfa Jing, et al.
Published: (2022-07-01)
by: Jianfa Jing, et al.
Published: (2022-07-01)
Effect of blast furnace dust as a reductant on direct reduction roasting for separating titanium and iron in seaside titanomagnetite
by: HU Tian-yang, et al.
Published: (2016-05-01)
by: HU Tian-yang, et al.
Published: (2016-05-01)
Characteristics of Heavy Metal Dusts in the Copper Matte Smelting Process and Progress in Accerations Control Technology
by: Shaosong Tan, et al.
Published: (2023-04-01)
by: Shaosong Tan, et al.
Published: (2023-04-01)
Study on Performance of High Al2O3 Slag and Smelting Practice of 1 750 m3 Blast Furnace at Jiyuan Steel
by: Li Rong, et al.
Published: (2012-09-01)
by: Li Rong, et al.
Published: (2012-09-01)
Smelting of low-grade saprolitic nickel ore in DC-arc furnace
by: Nurjaman F., et al.
Published: (2023-01-01)
by: Nurjaman F., et al.
Published: (2023-01-01)
Development of stabilization measures aimed at removing zinc with smelting products and accumulating titanium in the hearth of a blast furnace
by: Yurii Semenov, et al.
Published: (2024-10-01)
by: Yurii Semenov, et al.
Published: (2024-10-01)
Mechanical and Durability Properties of Mortars Incorporating Red Mud, Ground Granulated Blast Furnace Slag, and Electric Arc Furnace Dust
by: Javad Sabzi, et al.
Published: (2021-04-01)
by: Javad Sabzi, et al.
Published: (2021-04-01)
Stabilization of electric-arc furnace dust in concrete
by: Carlos Alberto Caldas de Souza, et al.
Published: (2010-12-01)
by: Carlos Alberto Caldas de Souza, et al.
Published: (2010-12-01)
Monosodium Glutamate as Selective Lixiviant for Alkaline Leaching of Zinc and Copper from Electric Arc Furnace Dust
by: Erik Prasetyo, et al.
Published: (2020-05-01)
by: Erik Prasetyo, et al.
Published: (2020-05-01)
Removal behavior of Zn and alkalis from blast furnace dust in pre-reduction sinter process
by: Zhao Guiqing, et al.
Published: (2023-07-01)
by: Zhao Guiqing, et al.
Published: (2023-07-01)
Development of an Intelligent Cooling Stave as Part of the Cooling System of a Blast Furnace
by: Marek Berlinski, et al.
Published: (2024-09-01)
by: Marek Berlinski, et al.
Published: (2024-09-01)
Study on the Bath Smelting Reduction Reaction and Mechanism of Iron Ore: A Review
by: Guilin Wang, et al.
Published: (2023-03-01)
by: Guilin Wang, et al.
Published: (2023-03-01)
Concretes based on composite cements with the addition of granulated blast furnace slag and cement dust
by: Leonid Dvorkin, et al.
Published: (2023-09-01)
by: Leonid Dvorkin, et al.
Published: (2023-09-01)
Early Bronze Age copper smelting furnaces from Chrysokamino, Crete
by: Philip P. Betancourt, et al.
Published: (2023-09-01)
by: Philip P. Betancourt, et al.
Published: (2023-09-01)
Methods of mathematical modeling for evaluation of energy management of blast-furnace plant
by: M. Szega, et al.
Published: (2015-07-01)
by: M. Szega, et al.
Published: (2015-07-01)
Behavior of chromium in the reduction and smelting of high alumina nickel laterite in blast furnace
by: Shuai Wang, et al.
Published: (2023-01-01)
by: Shuai Wang, et al.
Published: (2023-01-01)
Stepwise extraction of zinc, indium and lead from secondary zinc oxide dusts experimental study
by: Gui-hua WANG, et al.
Published: (2024-12-01)
by: Gui-hua WANG, et al.
Published: (2024-12-01)
Flash Smelting Furnace Renewal and Productivity Improvement in the Saganoseki Smelter and Refinery
by: Yutaka YASUDA, et al.
Published: (2020-08-01)
by: Yutaka YASUDA, et al.
Published: (2020-08-01)
Some Aspects of the Control for the Radial Distribution of Burden Material and Gas Flow in the Blast Furnace
by: Anatoliy Golovchenko, et al.
Published: (2020-02-01)
by: Anatoliy Golovchenko, et al.
Published: (2020-02-01)
Effects of Ultrafine Blast Furnace Slag on the Microstructure and Chloride Transport in Cementitious Systems under Cyclic Drying–Wetting Conditions
by: Wei Li, et al.
Published: (2022-04-01)
by: Wei Li, et al.
Published: (2022-04-01)
Continual Measuring of Local Stress Values on Shell of the Blast Furnace Hearth and of Total Shell Expansion
by: P. Bigoš, et al.
Published: (2012-01-01)
by: P. Bigoš, et al.
Published: (2012-01-01)
Processing of TiO<sub>2</sub> from titanium-bearing blast furnace slag as titanium source
by: X. Li, et al.
Published: (2016-07-01)
by: X. Li, et al.
Published: (2016-07-01)
Application of laser surface detection technology in blast furnace gas flow control and optimization
by: Yang Jian, et al.
Published: (2024-03-01)
by: Yang Jian, et al.
Published: (2024-03-01)
Utilization of bentonite in cementation of Cs-137-contaminated electric arc furnace dust
by: Klitsadee Yubonmhat, et al.
Published: (2025-05-01)
by: Klitsadee Yubonmhat, et al.
Published: (2025-05-01)
Alkaline carbonates in blast furnace process
by: P. Besta, et al.
Published: (2014-10-01)
by: P. Besta, et al.
Published: (2014-10-01)
Hydrometallurgical Leaching of Copper Flash Furnace Electrostatic Precipitator Dust for the Separation of Copper from Bismuth and Arsenic
by: Michael Caplan, et al.
Published: (2021-02-01)
by: Michael Caplan, et al.
Published: (2021-02-01)
Zinc Recovery from Steelmaking Dust by Hydrometallurgical Methods
by: Piotr Palimąka, et al.
Published: (2018-07-01)
by: Piotr Palimąka, et al.
Published: (2018-07-01)
The effect of blast furnace coke quality on the possibility of its use
by: A. Konstanciak
Published: (2013-04-01)
by: A. Konstanciak
Published: (2013-04-01)
Features of Cast Iron Smelting in Induction Crucible Furnaces
by: Grachev V.
Published: (2017-09-01)
by: Grachev V.
Published: (2017-09-01)
ASSESSMENT OF FRACTIONAL COMPOSITION OF THE INDUSTRIAL DUST COMING TO THE ATMOSPHERE OF THE CITY (ON THE EXAMPLE OF THE DUST WHICH IS ALLOCATED FROM THE ELECTROSTEEL-SMELTING FURNACE)
by: Elena Anatolievna Semyonova, et al.
Published: (2022-10-01)
by: Elena Anatolievna Semyonova, et al.
Published: (2022-10-01)
Similar Items
-
Synthesis and characterization of tenorite (CuO) nanoparticles from smelting furnace dust(SFD)
by: Darezereshki E., et al.
Published: (2013-01-01) -
Study on the strength of iron and steel smelting waste blast furnace slag
by: H. Z. Yang, et al.
Published: (2024-01-01) -
Recovery of zinc from blast furnace dust via ultrasonic-enhanced crotonic acid leaching: Leaching kinetics and mechanism
by: Long Wang, et al.
Published: (2025-09-01) -
Reduction Smelting of the Waelz Slag from Electric Arc Furnace Dust Processing: An Experimental Study
by: Pavel Grudinsky, et al.
Published: (2023-02-01) -
CFD Analysis of Low-Cost Solutions to Minimize Gas and Dust Emissions during the Emergency Opening of Blast Furnace Bleeders
by: Marco Boscolo, et al.
Published: (2022-02-01)
