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首页> 外文期刊>Minerals Engineering >Novel chelating surfactant 5-heptyl-1,2,4-triazole-3-thione: Its synthesis and flotation separation of malachite against quartz and calcite
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Novel chelating surfactant 5-heptyl-1,2,4-triazole-3-thione: Its synthesis and flotation separation of malachite against quartz and calcite

机译:新型螯合表面活性剂5-Heptyl-1,2,4-Tri唑-3-Thione:孔雀石对石英和方解石的合成和浮选分离

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摘要

A novel chelating surfactant 5-heptyl-1,2,4-triazole-3-thione (HpTT) was synthesized and originally introduced as a collector for flotation separation of malachite from quartz and calcite. Micro-flotation results showed that HpTT exhibited better flotation selectivity for malachite against calcite and quartz than octyl hydroxamic acid (OHA), and achieved the efficient flotation separation of malachite from its mixture with calcite or quartz under pH 6.5-11.5. The contact angle results deduced a strong hydrophobization of HpTT to malachite. Zeta potential demonstrated that HpTT possessed a selective affinity to malachite against quartz and calcite, and might anchor on malachite via specific adsorption. UV spectra gave clear evidences that HOT selectively responded to Cu2+ and Cu+ ions, but hardly to Ca2+ ions. FTIR confirmed the adsorption of HpTT on malachite surfaces. XPS recommended that the surface HpTT-Cu(I) complexes were produced on malachite surfaces with reducing the surface Cu(II) to Cu(I) and building the Cu-S and Cu-N bonds.
机译:合成了一种新型螯合表面活性剂5-Hepte-1,2,4-三唑-3-Thione(HPTT),最初作为来自石英和方解石的孔雀石浮选分离的集电器。微浮选结果表明,HPTT表现出对核石沸石对方解石和石英的更好的浮选选择性,而不是辛基羟肟酸(OHA),并在pH 6.5-11.5下与胶铁质或石英的混合物实现了孔雀石的有效浮选分离。接触角结果推导出HPTT的强疏水化到孔雀石。 Zeta潜力表明HPTT对石英和方解石具有对孔雀石的选择性亲和力,并且可以通过特异性吸附锚定孔雀石。紫外光光谱使热选择性地应对Cu 2 +和Cu +离子的清晰证据,但难以加入Ca2 +离子。 FTIR证实了HPTT在孔雀石表面上的吸附。 XPS建议在孔雀石表面上产生表面HPTT-Cu(I)配合物,其通过将表面Cu(II)降低至Cu(I)并构建Cu-S和Cu-N键。

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