新型捕收剂N-[3-(异癸氧基)丙基]丙烷-1,3-二胺对菱镁矿与石英的高效反浮选分离:表面选择性吸附机理研究

IF 6.9 2区 材料科学 Q2 CHEMISTRY, PHYSICAL
Xiaoqi Ban , Jin Yao , Wanzhong Yin , Yu Xie , Weifan Du , Taozhong Zhang , Yulian Wang
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引用次数: 0

摘要

介绍了新型阳离子表面活性剂N-[3-(异癸氧基)丙基]丙烷-1,3-二胺(IOPDA)作为捕收剂在菱镁矿反浮选脱硅中的应用。系统评价了IOPDA在菱镁矿与石英浮选分离中的选择性捕收性能。在pH 6.0、IOPDA浓度为80 mg/L的条件下进行了单矿物和人工混合矿物浮选实验,结果表明浮选分离效率显著提高。最终精矿MgO品位为46.55 %,SiO2品位为1.97 %,石英去除率为92.51 %。与常规十二烷基胺(DDA)相比,IOPDA条件下的浮选选择性指数(SI)和分离效率(SE)显著提高,表明其选择性捕收能力增强。为了阐明IOPDA的选择性吸附机理,采用接触角测量、Zeta电位测试、FTIR、XPS、AFM和tof - sims等先进技术分析了IOPDA在菱镁矿和石英表面的吸附。研究发现,IOPDA通过静电相互作用和氢键作用优先吸附石英的氧位,而在菱镁矿上的吸附较弱。这种选择性吸附增强了矿物之间的润湿性差异,促进了高效的浮选分离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

High-efficiency reverse flotation separation of magnesite from quartz using a novel collector, N-[3-(Isodecyloxy)propyl]propane-1,3-diamine: Mechanistic Insights into surface selective adsorption

High-efficiency reverse flotation separation of magnesite from quartz using a novel collector, N-[3-(Isodecyloxy)propyl]propane-1,3-diamine: Mechanistic Insights into surface selective adsorption

High-efficiency reverse flotation separation of magnesite from quartz using a novel collector, N-[3-(Isodecyloxy)propyl]propane-1,3-diamine: Mechanistic Insights into surface selective adsorption
This study introduces N-[3-(Isodecyloxy)propyl]propane-1,3-diamine (IOPDA), a novel cationic surfactant, as a collector in the reverse flotation desilication of magnesite. It systematically evaluates IOPDA’s selective collecting performance in the flotation separation of magnesite from quartz. Single-mineral and artificial mixed mineral flotation experiments were conducted at pH 6.0 and an IOPDA concentration of 80 mg/L, where results showed significant improvements in flotation separation efficiency. The final concentrate achieved an MgO grade of 46.55 %, SiO2 grade of 1.97 %, and a quartz removal rate of 92.51 %. Compared to the conventional Dodecylamine (DDA), the flotation Selectivity Index (SI) and Separation Efficiency (SE) under IOPDA conditions were notably superior, demonstrating its enhanced selective collecting ability. To elucidate the selective adsorption mechanism of IOPDA, advanced techniques—such as contact angle measurements, Zeta potential testing, FTIR, XPS, AFM, and TOF-SIMS—were employed to analyze adsorption on magnesite and quartz surfaces. The study found that IOPDA preferentially adsorbs on the oxygen sites of quartz through electrostatic interactions and hydrogen bonding, while its adsorption on magnesite is weaker. This selective adsorption enhances the wettability difference between the minerals, facilitating highly efficient flotation separation.
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来源期刊
Applied Surface Science
Applied Surface Science 工程技术-材料科学:膜
CiteScore
12.50
自引率
7.50%
发文量
3393
审稿时长
67 days
期刊介绍: Applied Surface Science covers topics contributing to a better understanding of surfaces, interfaces, nanostructures and their applications. The journal is concerned with scientific research on the atomic and molecular level of material properties determined with specific surface analytical techniques and/or computational methods, as well as the processing of such structures.
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