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首页> 外文期刊>Journal of industrial and engineering chemistry >Synthesis, flotation performance and adsorption mechanism of 3-(ethylamino)-N-phenyl-3-thioxopropanamide onto galena/sphalerite surfaces
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Synthesis, flotation performance and adsorption mechanism of 3-(ethylamino)-N-phenyl-3-thioxopropanamide onto galena/sphalerite surfaces

机译:3-(乙基氨基)-N-苯基-3-噻醇丙烷酰胺在Galena / sphalerite表面上的合成,浮选性能和吸附机制

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In this paper, a novel beta-Oxo thioamide surfactant 3-(ethylamino)-N-phenyl-3-thioxopropanamide (EAPhTXPA) was synthesized and first used as flotation collector for galena and sphalerite. The results of micro-flotation tests showed that EAPhTXPA possessed not only stronger collecting ability but also better selectivity to galena against sphalerite than traditional sulfide collector sodium isobutyl xanthate (SIBX). Adsorption tests indicated that EAPhTXPA could adsorb onto galena surfaces more easily than SIBX, while the adsorption affinity of EAPhTXPA to sphalerite was weaker than that of SIBX. The results of FTIR and XPS spectra demonstrated that there was no chemical bond or new chemical state appeared on sphalerite surfaces after treatment by EAPhTXPA, while Pb-EAPhTXPA complexes were formed on galena surfaces by reaction of EAPhTXPA's -C(=S)-, -C(=O)- and -NH- groups with surface Pb atoms to build Pb-S, Pb-O and Pb-N bonds. DFTcalculations further gave an evidence that the dominated interaction between sphalerite and EAPhTXPA was probably van der Walls forces, and EAPhTXPA reacted with galena by the formation of Pb-S, Pb-O and Pb-N bonds. (C) 2019 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:本文合成了一种新型β-氧代硫胺表面活性剂3-(乙基氨基)-N-苯基-3-噻丙烷烷基(EAPHTXPA),首先用作Galena和Sphalerite的浮选收集器。微浮选试验的结果表明,EAPHTXPA不仅具有更强的收集能力,而且还具有比传统的硫化硫化钠异丁酯(SIBX)对斯巴尔氏菌的Galena更好的选择性。吸附试验表明,EAPHTXPA可以比SIBX更容易地吸附到Galena表面上,而EAPHTXPA对斯巴尔氏菌的吸附亲和力弱于SIBX。 FTIR和XPS光谱的结果证明,通过EAPHTXPA处理后,斯普里氏菌表面上没有化学键或新化学状态,而BB-EAPHTXPA复合物通过EAPHTXPA的-C(= S)反应在Galena表面上形成 - , - c(= o) - 与表面pb原子的-nh-组,以构建Pb-s,pb-o和pb-n键。 DFTCalculations进一步达到了证据表明Sphalerite和EAPHTXPA之间的主导相互作用可能是范德墙部队,而EAPHTXPA通过形成PB-S,PB-O和PB-N键与Galena反应。 (c)2019年韩国工程化学学会。 elsevier b.v出版。保留所有权利。

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