Lead electrolyte and purification method of impurity metal ions in anode slime washing water

A technology of impurity metal ions and lead electrolyte, applied in the field of lead electrolytic refining, can solve the problems of increased production cost, low production efficiency, repeated smelting, etc., and achieve the effects of increased production efficiency, high degree of automation, and significant economic benefits

Active Publication Date: 2016-08-10
SHUI KOU SHAN NONFERROUS METALS LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] High-impurity crude lead is used for electrolytic refining. In order to reduce the entry of impurity metal ions into the electrolyte, low current density (≤140A / m) is generally used at home and abroad. 2 ), the production efficiency is low, and the medium and high current density (≥170A / m 2 ), it will inevitably cause the impurity metal ions in the anode slime washing water and the electrolyte to exceed the standard by a large margin. The common practice at home and abroad is to use 1 to 3 cycles to increase the current density to precipitate impurity metal ions, and the precipitated lead of impurity metal ions exceeding the standard is returned to the anode mold as the anode plate, resulting in repeated metal smelting and increased production costs.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] The detection of the concentration of impurity metal ions in the electrolyte at the initial stage of resumption of lead electrolysis is as follows: Bi 0.024g / L, Cu0.006g / L, Ag 0.0085g / L, Sb 0.85g / L, among which copper, silver and bismuth exceeded the standard by 3~ More than 10 times. Purify the impurity metal ions in the electrolyte: install the lead anode plate and the lead cathode plate in the electrolytic cell according to the normal production organization, first turn off the electricity, control the electrolyte circulation speed in the electrolytic cell to 8L / min, and clean the electrolyte every 6 hours After 32 hours, the electrolyte test results are as follows: Bi 0.0026g / L, Cu 0.0020g / L, Ag 0.00065g / L, Sb 0.25g / L, the test results meet the standard for lead electrolyte, then power on, use normal Medium to high current density for production.

[0018] In this embodiment, the impurity metal ions in the electrolyte are purified and replaced by lead and bismuth, t...

Embodiment 2

[0021] At the initial stage of resumption of lead electrolytic production, the concentration of impurity metal ions in the electrolyte was detected as follows: Bi 0.012g / L, Cu0.004g / L, Ag 0.0038g / L, Sb 0.42g / L. Among them, bismuth, copper, and silver exceeded the standard by more than 2 to 5 times respectively. Purification of impurity metal ions in the electrolyte: according to the normal production organization, install the lead anode plate and the lead cathode plate in the electrolytic cell, first turn off the power, control the electrolyte circulation speed in the electrolytic cell to 10L / min, and test the electrolyte every 12 hours After 24 hours, the electrolyte test results are as follows: Bi 0.0028g / L, Cu 0.0016g / L, Ag 0.00057g / L, Sb 0.24g / L. The test result conforms to the lead electrolyte standard, and normal production is carried out after power-on.

[0022] In this embodiment, the impurity metal ions in the electrolyte are purified and replaced by lead and bismuth...

Embodiment 3

[0025] The anode slime washing water produced by medium and high current density electrolytic refining of high-impurity crude lead has been tested to contain impurity metal ions: Bi 0.48g / L, Cu 0.004g / L, Ag 0.002g / L, Sb 1.0 g / L. Among them, bismuth exceeds the standard of anode slime washing water by 16 times, and must be purified. Anode slime washing water impurity metal ion purification, the anode slime washing water is transported to the washing water purification tank, the tank is filled with lead plates, and the volume ratio of the lead plate surface area to the anode slime washing water is controlled to be 25m 2 / m 3 After 24 hours of reaction clarification, the anode slime washing water in the tank was sampled for detection. The test results are as follows: Bi 0.015g / L, Cu 0.002g / L, Ag 0.00045g / L, Sb 0.16g / L. The test result conforms to the anode slime washing water standard, and the anode slime washing water can be mixed into the electrolyte.

[0026] The impurity m...

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Abstract

A purifying method for removing impurities metal ions in lead electrolyte and anode slime washing water comprises the following steps: for removing impurities metal ions in the lead electrolyte, installing an anode plate and a cathode plate in an electrolytic cell, controlling the electrolyte circulation speed in the electrolytic cell at 8-10 L / min, sampling and detecting once every 6-12 h until the impurities metal ions in the electrolyte reach the standard, and then conducting electricity to perform normal production; and for removing impurities metal ions in anode slime washing water, conveying anode slime washing water to a washing water purifying tank, installing a lead plate in the tank, controlling the ratio of the lead plate superficial area to the anode slime washing water volume, reacting and clarifying for 24-48 h, after the impurities metal ions in the anode slime washing water reach the standard, mixing with an electrolyte. The purification method helps to solve the technical problem that unqualified precipitated lead is produced in a high-impurity crude lead electrolytic refining process or a lead electrolysis recovery production preliminary stage because impurities metal ions in electrolytes exceed standard; the precipitated lead produced by employing the purification method has qualified quality; and the purification method has the advantages of simple operation, high production efficiency and high valuable metal recovery rate, and the economic benefit is substantial.

Description

technical field [0001] The invention relates to the field of lead electrolytic refining, in particular to a method for purifying impurity metal ions in lead electrolyte and anode slime washing water. Background technique [0002] In recent years, my country's lead smelting capacity and output have increased significantly, the structural contradictions in the lead industry have further intensified, and industry competition has become increasingly fierce. With the increasing depletion of mineral resources and the increasing production cost of lead smelting, many lead smelting enterprises have changed their concept. Low (about 90%), high-impurity crude lead with high content of arsenic, antimony, bismuth, copper and gold and silver is then electrolytically refined to comprehensively recover valuable metals and improve the comprehensive recovery efficiency of enterprises. [0003] High-impurity crude lead is used for electrolytic refining. In order to reduce the entry of impuri...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C25C3/24
Inventor 郭飞袁培新彭时军罗清平何立新夏兵伟肖伟松陈海燕彭民
Owner SHUI KOU SHAN NONFERROUS METALS LTD
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