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首页> 外文期刊>Minerals Engineering >Separation of ultrafine chalcogenide particles using Fe3O4 magnetic nanoparticles and ligands with metal selectivity
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Separation of ultrafine chalcogenide particles using Fe3O4 magnetic nanoparticles and ligands with metal selectivity

机译:使用Fe3O4磁性纳米粒子和具有金属选择性配体的超细硫属化物颗粒的分离

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The role of magnetic nanoparticles on the separation of chalcogenide fine particles from their mixture was investigated for the first time using the selective chelation property of ligands with metals. The need of the study lies in the fact that the finer sized ore particles do not respond to the conventional froth flotation technique of separation. The separation study has been carried out by synthesizing Fe3O4 magnetic nanoparticles and then using it in a model mineral mixture of ZnS and PbS added previously with a chelating ligand 8-hydroxyquinoline (HQ) in aqueous medium. The % of collected ZnS and PbS per mg of magnetically separated sample has been estimated as 95% and 0.28% respectively. Such kind of efficient separation has become feasible because of the fact that addition of 8-HQ induces simultaneous complexation with Zn2+ and Fe3+ ions but not with Pb2+ ions. This selective chelation has been studied by vibrational, fluorescence, XPS spectroscopic techniques and zeta potential measurements. Along with these results, controlled experiments were performed to confirm the selective chelation of 8-HQ ligands.
机译:磁性纳米颗粒对从其混合物中分离硫属化物细颗粒的作用,首次使用配体的配体与金属的选择性螯合性进行研究。该研究的需要在于,细细尺寸的矿石颗粒没有响应传统的泡沫浮选技术的分离。通过合成Fe3O4磁性纳米颗粒然后在先前用螯合配体8-羟基喹啉(HQ)的ZnS和PBS的模型矿物混合物中使用它在含有螯合配体8-羟基喹啉(HQ)中的模型矿物质混合物中进行分离研究。每毫克磁分离样品的收集ZnS和PBS的百分比分别估计为95%和0.28%。这种有效的分离是可行的,因为添加了8-HQ与Zn2 +和Fe3 +离子同时络合但不具有PB2 +离子。通过振动,荧光,XPS光谱技术和Zeta电位测量研究了这种选择性螯合。除了这些结果之外,还进行受控实验以确认8-HQ配体的选择性螯合剂。

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