Smelting processing method adopting oxygen-enriched molten pool for stibnite

A technology for smelting and processing methods in an oxygen-enriched molten pool, applied in chemical instruments and methods, inorganic chemistry, sulfur compounds, etc., can solve the problems of insufficient and effective utilization of red mud, occupation of land, environmental pollution, etc., to eliminate safety and The hidden danger of environmental pollution, the effect of saving energy consumption and reducing production costs

Inactive Publication Date: 2018-05-08
广西生富锑业科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

A large amount of red mud cannot be fully and effectively utilized, so it can only be piled up in large-scale storage yards, which takes up a lot of land, and also causes serious pollution to the environment, causing

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] Oxygen-enriched air is blown in from the side of the oxygen-enriched molten pool in a direction inclined upward relative to the horizontal direction and from the bottom, and the flow rate of the oxygen-enriched air is controlled to be 120 m / s. The oxygen-enriched air blown in from the side of the oxygen-enriched molten pool The oxygen volume concentration of the air is 28%, and the temperature is 1050°C. The oxygen volume concentration of the oxygen-enriched air blown from the lower part of the oxygen-enriched molten pool is 82%, and the temperature is 980°C. Waste red mud, lime, and coal powder are crushed into particles with a particle size of 3 mm, mixed evenly, and then sent to the oxygen-enriched molten pool for oxygen-enriched reduction smelting to obtain antimony oxides with an antimony content of 86%. The temperature is 990°C; recovery and separation of antimony oxides and waste slag; collection of 20wt%SO 2 The flue gas is sent to the sulfuric acid workshop for...

Embodiment 2

[0028] Oxygen-enriched air is blasted from the side of the oxygen-enriched molten pool in a direction inclined upward relative to the horizontal direction and from the bottom, and the flow rate of the oxygen-enriched air is controlled to be 150 m / s. The oxygen-enriched air blown from the side of the oxygen-enriched molten pool The oxygen volume concentration of the air is 31%, and the temperature is 1000°C. The oxygen volume concentration of the oxygen-enriched air blown from the lower part of the oxygen-enriched molten pool is 83%, and the temperature is 1050°C. Waste red mud, lime, and coke particles are crushed into particles with a particle size of 8 mm, mixed evenly, and then sent to the oxygen-enriched molten pool for oxygen-enriched reduction smelting to obtain antimony oxides with an antimony content of 87%. The temperature is 1055 ° C; recovery and separation of antimony oxides and slag; 2 The flue gas is sent to the sulfuric acid workshop for acid production after wa...

Embodiment 3

[0032] Oxygen-enriched air is blown in from the side of the oxygen-enriched molten pool in a direction inclined upward relative to the horizontal direction and from the bottom, and the flow rate of the oxygen-enriched air is controlled to be 180 m / s. The oxygen-enriched air blown in from the side of the oxygen-enriched molten pool The oxygen volume concentration of the air is 34%, and the temperature is 1160°C. The oxygen volume concentration of the oxygen-enriched air blown from the lower part of the oxygen-enriched molten pool is 84%, and the temperature is 1020°C. Waste red mud, lime, and coal powder are crushed into particles with a particle size of 14 mm, mixed evenly, and then sent to the oxygen-enriched molten pool for oxygen-enriched reduction smelting to obtain antimony oxides with an antimony content of 86%. The temperature is 1108°C; recovery and separation of antimony oxides and waste residue; collection of 22wt%SO 2 The flue gas is sent to the sulfuric acid worksh...

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Abstract

The invention discloses a smelting processing method adopting oxygen-enriched molten pool for stibnite. The method comprises the steps that oxygen-enriched air is blown into the oxygen-enriched moltenpool, then stibnite materials, aluminum oxide waste red mud, lime and a reducing agent are mixed and then fed into an oxygen-enriched smelting tank for oxygen-enriched reduction smelting, the antimony oxide with 86% of the antimony is obtained, and the temperature in the molten pool is controlled to be 990-1360 DEG C in the smelting process; the antimony oxide and the waste residue are recoveredand separated; and flue gas containing SO2 discharged from the top of the oxygen-enriched molten pool is collected, and the flue gas is recycled through waste heat, the flue gas is carried out purifying and dust removing, and sent into a sulfuric acid workshop for acid production, and the collected smoke dust and the waste residue are subjected to granulation and then returned to the oxygen-enriched smelting pool for the oxygen-enriched reduction. The method has the advantages that the adaptability of raw materials is high, the energy consumption is low, the direct yield of the antimony metaland the recovery rate are high, the treatment process is short, the process is stable, the production efficiency is high, the labor intensity is low, the production is clean and environment-friendly,environmental pollution and stacking management of the red mud are reduced, and the method has a good application prospect.

Description

technical field [0001] The invention relates to the field of chemical industry, in particular to a smelting treatment method for stibnite in an oxygen-enriched molten pool. Background technique [0002] Antimony in antimony ore mainly exists in the form of antimony sulfide. For the treatment of antimony sulfide ore, there are mainly two treatment processes: wet method and fire method. Among them, the wet process of treating stibnite has the disadvantages of large amount of wastewater and high treatment costs. Pyrotechnological treatment of antimony ore, the process commonly used in China is blast furnace volatilization smelting-reverberatory furnace reduction, in the smelting process, antimony sulfide is volatilized and oxidized, at the same time gangue slag is released from the hearth, and the antimony oxide powder obtained by flue gas dust collection Enter the reverberatory furnace for reduction to produce crude antimony. Although the blast furnace volatilization smeltin...

Claims

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Application Information

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IPC IPC(8): C22B30/02C01B17/74
CPCC01B17/74C22B30/02Y02P10/20Y02P20/129
Inventor 韦建初韦竣严
Owner 广西生富锑业科技股份有限公司
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