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A kind of beneficiation method of antimony sulfide ore

A technology of antimony sulfide ore and beneficiation method, applied in flotation, solid separation and other directions, can solve the problems of operation safety impact, low lead content in antimony concentrate, high production cost, and achieve reduced production cost, strong collection capacity, Easy to use effect

Active Publication Date: 2019-11-15
锡矿山闪星锑业有限责任公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] CN101623673A discloses a kind of beneficiation method of antimony ore, adopts H 2 SO 4 As a pH adjuster for pulp, and then use Al 2 (SO 4 ) 3 As an antimony mineral activator, the resulting antimony concentrate contains low lead, but the antimony recovery rate is only 90.34%, the recovery rate is low, and the H 2 SO 4 The addition of it has a corrosive effect on the equipment and has a certain impact on the safety of the operation
However, by flotation recovery of carbon-containing lead-zinc-antimony ore, the highest grade of antimony in the obtained lead-antimony concentrate is only 12.55%, and the highest antimony recovery rate is only 70.23%. high problem

Method used

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  • A kind of beneficiation method of antimony sulfide ore

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] Crush the antimony sulfide ore to a particle size of <14mm, and grind to a particle size of 200 mesh. The mass percentage of the under sieve is 72.50%. Add water and stir to adjust the slurry to a mass concentration of 35.0%. After one roughing and three sweeping And three times of selection to obtain antimony concentrate; among them, in the rough selection, 70g lead nitrate / t antimony sulfide ore is used as activator, 120gMA-3 / t antimony sulfide ore and 95g ethyl sulfide nitrogen / t antimony sulfide ore are used as a combination Collecting agent, 130g neoterpineol oil / t antimony sulfide ore was used as the foaming agent; in the first sweep and the second sweep, 40g lead nitrate / t antimony sulfide ore was used as the activator, both with 60gMA -3 / t antimony sulfide ore is used as a collector; in the third sweep and selection, no agent is added.

Embodiment 2

[0028] Crush the antimony sulfide ore to a particle size of <14mm, and grind the ore to a particle size of 200 mesh. The mass percentage of the sieve is 70.00%. Add water and stir to adjust the slurry to a mass concentration of 34.0%. After one roughing and three sweeping And three times of selection to obtain antimony concentrate; among them, in the rough selection, 80g lead nitrate / t antimony sulfide ore is used as activator, and 130gMA-3 / t antimony sulfide ore and 110g ethyl sulfide nitrogen / t antimony sulfide ore are used as a combination Collector, 150g neoterpineol oil / t antimony sulfide ore is used as the foaming agent; in the first sweep and second sweep, 50g lead nitrate / t antimony sulfide ore is used as the activator, both with 65gMA -3 / t antimony sulfide ore is used as a collector; in the third sweep and selection, no agent is added.

Embodiment 3

[0030] Crush the antimony sulfide ore to a particle size of <14mm, and grind to a particle size of 200 mesh. The mass percentage of the under sieve is 74.00%. Add water and stir to adjust the slurry to a slurry mass concentration of 33.0%. After one roughing and three sweeping And three times of selection to obtain antimony concentrate; among them, in the rough selection, 65g lead nitrate / t antimony sulfide ore is used as the activator, 110gMA-3 / t antimony sulfide ore and 90g ethyl sulfide nitrogen / t antimony sulfide ore are used as a combination Collecting agent, 120g neoterpineol oil / t antimony sulfide ore was used as foaming agent; in the first sweep and second sweep, 35g lead nitrate / t antimony sulfide ore was used as activator, both with 55gMA -3 / t antimony sulfide ore is used as a collector; in the third sweep and selection, no agent is added.

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Abstract

The invention relates to a mineral processing method of antimony sulfide ore. The mineral processing method comprises the following steps: crushing raw antimony sulfide ore, carrying out ore grinding, adding water, stirring, carrying out size mixing, recycling antimony sulfide minerals by adopting a flotation method, and carrying out roughing once, scavenging for three times and concentration for three times to obtain antimony concentrate, wherein lead nitrate is taken as an activating agent, xanthogenate mixture and B sulfur nitrogen are taken as a combined collecting agent and new coniferyl oil is taken as a foaming agent during the roughing, and the lead nitrate is taken as the activating agent and the xanthogenate mixture is taken as a collecting agent during primary scavenging and secondary scavenging. The method provided by the invention has the advantages that floatation collecting capability on the antimony sulfide minerals is strong, recycling effect is good, antimony recovery rate is more than or equal to 93.2% and is increased by 0.98% compared with the prior art, lead-antimony ratio in the antimony concentrate is reduced by more than or equal to 26.8%, and antimony concentrate grade is more than or equal to 50.0%; reaction conditions of the method provided by the invention are neutral, corrosive effect on mineral processing equipment is alleviated, operation safety is improved, and production cost is reduced; and the method provided by the invention is easy to operate, efficient and environmentally friendly.

Description

Technical field [0001] The invention relates to a beneficiation method, in particular to a beneficiation method of antimony sulfide ore. Background technique [0002] As an important raw material in industrial production and people’s lives, antimony and its compounds have a wide range of uses. With the continuous mining of antimony metal mines, the resources of antimony continue to decrease, and the grade of ore is lower and lower. Traditional conventional flotation reagents are used. And the method has been difficult to improve the recovery rate of beneficiation. [0003] In the antimony flotation process, in order to increase the recovery rate of antimony, lead nitrate is used as the antimony flotation activator. However, part of the lead ions will enter the antimony concentrate, and lead is a harmful impurity in the antimony concentrate. The antimony concentrate contains lead High will affect the grade of antimony concentrate, and even the sales price. In addition, the antimon...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B03D1/012B03D1/008B03D103/02B03D101/02B03D101/04
CPCB03D1/008B03D1/012B03D2201/02B03D2201/04B03D2203/02
Inventor 蒋康生尹华功李国康汪卫红康卧飞曾艳平刘华丽陈诚
Owner 锡矿山闪星锑业有限责任公司
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