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不同饱和度十八碳脂肪酸钠作为捕收剂浮选Ca2+活化石英

彭丽群 刘润哲 吕兰 方舒 李宁 刘丽芬

矿产综合利用Issue(6):36-40,5.
矿产综合利用Issue(6):36-40,5.DOI:10.3969/j.issn.1000-6532.2023.06.006

不同饱和度十八碳脂肪酸钠作为捕收剂浮选Ca2+活化石英

Different Flotation Behaviors of Ca2+-Activated Quartz in the Presence of 18-Carbon Fatty Acids with Different Saturation

彭丽群 1刘润哲 1吕兰 2方舒 2李宁 2刘丽芬1

作者信息

  • 1. 云南磷化集团有限公司,云南 昆明 650600||国家磷资源开发利用工程技术研究中心,云南 昆明 650600
  • 2. 云南磷化集团有限公司,云南 昆明 650600
  • 折叠

摘要

Abstract

This is an essay in the field of mineral processing engineering.In this study,sodium palmitate,sodium oleate and sodium linoleate were applied as collectors for the flotation of Ca2+-activated quartz.Results indicate that the three different sodium fatty acids have different flotation performances for Ca2+-activated quartz.It was found that the sodium linoleate was a better collector for collecting Ca2+-activated quartz than sodium oleate and sodium palmitate.To understand the different flotation behaviors of the three fatty acids,a comprehensive investigation has been conducted through zeta-potential measurements,FTIR characterization,free Ca2+ concentration measurement,surface tension measurement,and quantitative adsorption determination.It was found that the addition of sodium fatty acids decreased(more negatively charged)the zeta potentials of Ca2+-activated quartz,suggesting the adsorption of sodium fatty acids occurred on the collophanite surfaces.Characterization by FTIR spectra indicates that the calcium fatty acids are generated in the mineral pulp.The free Ca2+ concentration measurement and the surface tension measurement show that the sodium linoleate is not as sensitive to Ca2+ as sodium oleate and sodium palmitate,the good ability of resistance to hard water of sodium linoleate should be the reason that the sodium linoleate could float Ca2+-activated quartz better.

关键词

矿物加工工程/石英/浮选/脂肪酸/钙离子活化

Key words

Mineral processing engineering/Quartz/Flotation/Fatty acid/Ca2+-acitvated

分类

矿业与冶金

引用本文复制引用

彭丽群,刘润哲,吕兰,方舒,李宁,刘丽芬..不同饱和度十八碳脂肪酸钠作为捕收剂浮选Ca2+活化石英[J].矿产综合利用,2023,(6):36-40,5.

基金项目

十三五国家重点研发计划(2018YFC1900200) (2018YFC1900200)

矿产综合利用

OACSTPCD

1000-6532

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