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首页> 外文期刊>Chemical Engineering Science >Synthesis of a novel collector based on selective nitrogen coordination for improved separation of galena and sphalerite against pyrite
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Synthesis of a novel collector based on selective nitrogen coordination for improved separation of galena and sphalerite against pyrite

机译:基于选择性氮气协调的新型收集器的合成改善了Galena和荆猪硫酸盐的分离

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摘要

During the separation of sulfide minerals, the problem of low selectivity always arises. A novel thiadiazole derivative (CSC-1) was developed for the flotation of sulfide minerals. The results of flotation tests showed that, compared with the conventionally-used ethyl xanthate, using CSC-1 as the collector, higher flotation recoveries of sphalerite and galena with improved selectivity against pyrite were obtained. Furthermore, zeta potential measurement and FTIR-spectra analysis results revealed that CSC-1 preferred to adsorb onto sphalerite and galena, rather than onto pyrite. The interaction mechanisms of CSC-1 with sphalerite and galena are electrostatic forces and chelation by forming N-Pb-S / N-Zn-S coordination bonds. DFT calculations demonstrated that both the Gibbs free energy difference (Delta G) and the distortion energy difference (AD) of metal ion-CSC-1 configuration before and after coordination follow the order: Pb2+-CSC-1 < Zn2+-CSC-1 < Fe2+-CSC-1, which further confirmed CSC-1 has preferable chelating selectivity towards Pb2+ and Zn2+, rather than Fe2+. This study indicates that CSC-1 has great potential for industrial application in sulfide mineral flotation. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在分离硫化物矿物期间,始终产生低选择性的问题。为硫化物矿物的浮选开发了一种新的噻唑衍生物(CSC-1)。浮选试验的结果表明,与常规使用的乙基黄原酸盐相比,使用CSC-1作为收集器,得到斯巴尔氏素和Galena的更高浮选回收率,具有改善的抗黄铁矿选择性。此外,Zeta电位测量和FTIR-Spectra分析结果显示CSC-1优选吸附到斯普利特和高级斯纳,而不是在硫铁斯上。通过形成N-PB-S / N-Zn-S配位键,CSC-1与闪锌矿和Galena的相互作用机制是静电力和螯合。 DFT计算表明,在协调之前和之后,Gibbs自由能量差(Delta G)和金属离子-CSC-1配置的失真能量差(AD)遵循顺序:PB2 + -CSC-1

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