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Tetrazinan-thione collectors for copper oxide mineral: Synthesis and flotation mechanism

机译:氧化铜矿物质的四氮素 - Thione收集器:合成和浮选机制

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Novel tetrazinan-thione compounds including 6-hexyl-1,2,4,5-tetrazinan-3-thione (HTT), 6-propyl-1,2,4,5-tetrazinan-3-thione (PrTT) and 6-phenyl-1,2,4,5-tetrazinan-3-thione (PhTT) were synthesized and originally introduced as collectors for beneficiation of copper oxide mineral. The micro-flotation investigations exhibited that HTT achieved higher malachite recovery with better flotation selectivity against calcite than octyl hydroxamic acid (OHA). The three tetrazinan-thione surfactants significantly improved the hydrophobicity of malachite surfaces as followed: HTT PhTT PrTT, matching well with their hydrophobic-hydrophilic index LogP value, as well as their flotation response to malachite. In-situ AFM images clearly presented that HTT firmly covered on malachite surfaces. Zeta potential suggested the chemisorption of malachite towards HTT. FTIR and XPS offered additional evidences that malachite chemisorbed HTT on to its surfaces where the Cu-S and Cu-N bonds were generated. The heptyl group possesses stronger hydrophobic than the hexyl group, while, HTT exhibited better hydrophobization towards malachite than OHA, which might be attributed to their different bonding mode on malachite surfaces.
机译:新的四唑烷 - 尖头化合物,包括6-己基-1,2,4,5-四唑-3-thione(HTT),6-丙基-1,2,4,5-四唑-3-thione(PRTT)和6-合成苯基-1,2,4,5-四硫脲-3-酮(PHTT),最初被引入收集器,用于氧化铜矿物质的利用。微浮选调查表明,HTT达到较高的孔雀沸石回收率,具有比辛基羟肟酸(OHA)对方解石的更好的浮选选择性。三四唑烷 - 尖头表面活性剂显着改善了孔雀石表面的疏水性,如所示:HTT> phtt> prtt,与它们的疏水性 - 亲水指数logp值相吻合,以及对孔雀石的浮选响应。原位AFM图像清楚地提出了HTT牢固地覆盖在孔雀石表面上。 Zeta潜力表明孔雀石的化学吸附朝向HTT。 FTIR和XPS提供了额外的证据,即孔雀石在产生Cu-S和Cu-N键的表面上达到HTT。 Heptyl组具有比己基的更强的疏水性,而HTT朝着奥氏孔朝向孔雀石的更好的疏水化,这可能归因于它们在孔雀石表面上的不同粘合模式。

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