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Synthesis of nanoparticle emulsion collector HNP and its application in microfine chalcopyrite flotation

机译:纳米颗粒乳液收集器HNP的合成及其在微循环硫代铜矿浮选中的应用

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Hydrophobic polystyrene nanoparticles bearing thiazole groups named HNP were used as collectors to improve recovery of microfine chalcopyrite in flotation. HNP adsorbs onto microfine particles selectively, which were modified hydrophobically to induce flotation effectively. Particle size and scanning electron microscope analysis for HNP show that HNP is a spherical nano particles with small size, uniform distribution and good dispersion. Infrared spectrum analysis for HNP proved that functional monomer 2-mercapto styrene acrylic thiazole was bonded chemically onto styrene. Flotation test results indicate that HNP is the right collector of chalcopyrite. Especially, the recovery of chalcopyrite is higher than 95% in neutral and acid media. FTIR results reveal that the flotation selectivity of collector HNP is due to strong chemical absorption onto chalcopyrite surface. Zeta potential analysis shows that the zeta potential of chalcopyrite decreased more quickly after interaction with HNP with the increase of pulp pH value, confirming that collector HNP is an anionic collector. Scanning electron microscope conform that HNP has good selective adsorption on chalcopyrite.
机译:携带含有HNP的含有噻唑基团的疏水聚苯乙烯纳米粒子被用作收集器,从而改善浮选中微荷核黄素的回收率。 HNP选择性地吸附在微细荷颗粒上,疏水地改性,以有效地诱导浮选。用于HNP的粒度和扫描电子显微镜分析表明,HNP是具有尺寸小,分布均匀和良好分散的球形纳米颗粒。用于HNP的红外光谱分析证明,将功能性单体2-巯基苯乙烯丙烯酸噻唑化学键合在苯乙烯上。浮选试验结果表明,HNP是硫代铜矿的合适收集器。特别是,中性和酸性介质的核黄素的回收率高于95%。 FTIR结果表明,收集器HNP的浮选选择性是由于硫代铜矿表面的强大化学吸收。 Zeta潜在分析表明,随着纸浆pH值的增加,在与HNP相互作用后,硫铜矿的ζ电位在与HNP相互作用后更快地降低,确认收集器HNP是阴离子收集器。扫描电子显微镜符合HNP对氯铜矿具有良好的选择性吸附。

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