中国资源综合利用2024,Vol.42Issue(6) :43-48.DOI:10.3969/j.issn.1008-9500.2024.06.011

金矿浮选尾矿提取长石的试验研究

Experimental Study on Extracting Feldspar from Gold Mine Flotation Tailings

王瑜 张晓亮 王攀志 任爱军
中国资源综合利用2024,Vol.42Issue(6) :43-48.DOI:10.3969/j.issn.1008-9500.2024.06.011

金矿浮选尾矿提取长石的试验研究

Experimental Study on Extracting Feldspar from Gold Mine Flotation Tailings

王瑜 1张晓亮 2王攀志 1任爱军2
扫码查看

作者信息

  • 1. 山东黄金矿业(莱州)有限公司焦家金矿,山东 烟台 261441
  • 2. 矿冶科技集团有限公司,北京 102628
  • 折叠

摘要

某金矿浮选尾矿主要由石英、长石和云母等矿物组成,根据粒径小于 0.074 mm的矿粒占总磨矿产品的比例,现场金矿浮选尾矿磨矿细度为 85%.为了实现长石的综合回收,开展长石工艺矿物学研究,通过选矿试验提取金矿浮选尾矿中的长石.首先分别开展脱钙浮选试验、脱云母浮选试验、长石与石英浮选分离试验,然后开展提取长石的全流程试验,最后开展长石精矿磁选脱铁试验.其中,长石与石英浮选分离采用无氟有酸工艺.浮选闭路试验获得产率 25.20%、K2O+Na2O含量 10.36%的长石精矿,长石精矿磁选可将Fe品位从 1.25%降低至 0.75%.

Abstract

The flotation tailings of a certain gold mine are mainly composed of minerals such as quartz,feldspar,and mica,according to the proportion of ore particles with a particle size less than 0.074 mm in the total grinding product,the grinding fineness of on-site gold mine flotation tailings is 85%.In order to achieve comprehensive recovery of feldspar,research on feldspar process mineralogy is carried out,and feldspar is extracted from gold mine flotation tailings through beneficiation experiments.Firstly,the decalcification flotation test,mica removal flotation test,and feldspar and quartz flotation separation test are separately carried out,then a full process test is conducted for extracting feldspar,finally magnetic separation and iron removal test is carried out for feldspar concentrate.Among them,the flotation separation of feldspar and quartz adopts a fluorine-free and acid-containing process.The closed circuit flotation test obtains a feldspar concentrate with a yield of 25.20%and a K2O+Na2O content of 10.36%,and magnetic separation of feldspar concentrate can reduce the Fe grade from 1.25%to 0.75%.

关键词

金矿浮选尾矿/长石/提取/选矿/无氟有酸工艺

Key words

gold mine flotation tailings/feldspar/extract/beneficiation/fluoride-free and acid-containing process

引用本文复制引用

基金项目

中国博士后科学基金资助项目(2022M721432)

出版年

2024
中国资源综合利用
徐州北矿金属循环利用研究所 中国物资再生协会

中国资源综合利用

CHSSCD
影响因子:0.358
ISSN:1008-9500
参考文献量14
段落导航相关论文