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Technique for resource utilization of lead and silver residues for zinc hydrometallurgy

A technology for hydrometallurgy of zinc and lead-silver slag, applied in photography technology, photography-assisted technology, improvement of process efficiency, etc., can solve problems such as unsatisfactory Pb recovery rate

Active Publication Date: 2016-11-09
HANZHONG ZINC IND
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Problems solved by technology

Most of the metals in the lead-silver slag exist in the form of regenerated compounds, so the recovery rates of Pb, Zn, and Ag in the flotation process are not ideal. The final test results show that the highest recovery rate of Pb in the flotation process is only 58%, and the recovery rate of Zn is only 58%. rate of 10% to 15%, and flotation tailings are still hazardous waste

Method used

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Embodiment Construction

[0022] The present invention will be described in detail below.

[0023] The mass fraction of lead in the lead concentrate in the present invention is greater than 50%.

[0024] Drying the zinc-lead-silver slag of hydrometallurgy with a mass fraction of 28-35% through a drying kiln at 700°C to reduce the moisture content to a mass fraction of 10-15% to obtain dried lead-silver slag. Drying is beneficial to the next process of batching and reducing the amount of heat taken away by the flue gas from the oxygen-enriched bottom-blown furnace; the dried lead-silver slag, lead concentrate and additives are batched, and the following conditions are met after batching: FeO and SiO 2 The mass ratio is (1.5~1.6): 1; CaO and SiO 2 The mass ratio is (0.45-0.6): 1; the mass fraction of Pb is greater than 30%; the mass fraction of S is greater than 14%, if the mass fraction of S is not greater than 14%, then adding no more than lead silver slag, lead concentrate and adding 3% of the total...

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Abstract

Provided is a technique for resource utilization of lead and silver residues for zinc hydrometallurgy. The technique comprises the steps that the dried lead and silver residues, lead concentrate and additives are blended, so that a mixture is obtained; the mixture is fed to an oxygen-enriched bottom-blowing furnace for oxidation smelting after being subjected to granulation, and primary lead and furnace residues are separated out; the furnace residues are fed into an oxygen lateral blowing metal smelting reduction furnace, broken coal and a flux are added to the oxygen lateral blowing metal smelting reduction furnace, so that furnace residues of the oxygen lateral blowing metal smelting reduction furnace are formed; the furnace residues are fed into a fuming furnace to obtain secondary lead; as for silver entering the primary lead and the secondary lead, anode mud is added in the electrolytic lead refining process of the primary lead and the secondary lead, and the silver is extracted from the anode mud; and as for zinc and lead entering smoke of the fuming furnace, the smoke is subjected to defluorination and dechlorination, zinc is obtained through hydrometallurgical leaching and extracted through electrodeposition, the lead is in the leaching residues, and then the lead is recovered through lead smelting. The technique is simple, the recovery rate of the lead in the lead and silver residues is about 95%, the zinc recovery rate is about 90%, the silver recovery rate is about 95%, and the sulfur utilization rate is about 90%.

Description

technical field [0001] The invention belongs to the field of nonferrous smelting, and relates to a resource utilization process of zinc, lead and silver slag in hydrometallurgy. Background technique [0002] In the high-temperature high-acid leaching process of zinc hydrometallurgy, lead and silver are enriched in the high-temperature high-acid leaching slag, which is called lead-silver slag. The rate of lead-silver slag varies greatly depending on raw materials and processes, and is about 20%-40%. , The approximate weight content of each component in the lead-silver slag is: Zn 2.5-6%, Fe 8-18%, lead 7-15%, silver 300-700g / t, sulfur 8-11%. [0003] The rotary kiln volatilization process is to add 40%-50% fuel (coke powder, coal, anthracite) to the filtered lead and silver slag, and add it to the rotary kiln for treatment. The temperature of the furnace gas in the kiln is generally controlled at 1000-1100 ℃, during the volatilization process of the rotary kiln, the processe...

Claims

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Application Information

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IPC IPC(8): C22B7/00C22B13/02C22B19/30C22B11/02C25C1/18
CPCC22B7/001C22B11/021C22B13/02C22B13/025C22B19/30C25C1/18Y02P10/20
Inventor 桂海平张健康高文杰侯小强刘朝斌成柏权张图进郭立庆刘茨珂刘倩王瑜
Owner HANZHONG ZINC IND
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