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Comparison of Adsorption of Phenol O-O and N-O Chelating Collectors at the Malachite/Water Interface in Flotation

机译:浮选孔雀石/水界面吸附苯酚O-O和N-O螯合捕集剂的比较

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To separate one base metal mineral from another by flotation, it is indispensable to identify chemical reagents that specifically interact with the surface metal sites of one mineral or a group of minerals. This work studies the interactions of chelating collectors which offer the best potential for collecting abilities and mineral specificity with a typical refractory oxide mineral (malachite). Zeta potential, adsorption and Fourier transform infrared (FTIR) measurements are applied to differentiate the interactions of salicylaldoxime and salicyl hydroxamate on the malachite surface. Salicylaldoxime and salicyl hydroxamate are of molecular structures that resemble each other, but with different bond distances in the ligand atoms which result in their unusual adsorption behavior and collecting ability. Thus, the flotation of malachite behaves differently with the two chelating collectors. This study might provide useful clues for designing novel collectors in base metal oxide flotations.
机译:为了通过浮选将一种贱金属矿物质与另一种贱金属矿物质分离,鉴定与一种或多种矿物的表面金属位点特异性相互作用的化学试剂是必不可少的。这项工作研究了螯合捕收剂与典型难熔氧化物矿物质(孔雀石)具有最佳的捕集能力和矿物特异性的相互作用。 Zeta电势,吸附和傅立叶变换红外(FTIR)测量用于区分孔雀石表面水杨醛肟和水杨异羟肟酸酯的相互作用。水杨醛肟和水杨酸异羟肟酸酯具有彼此相似的分子结构,但是在配体原子中具有不同的键距,这导致它们异常的吸附行为和收集能力。因此,孔雀石的浮选行为与两个螯合捕集剂不同。这项研究可能为设计贱金属氧化物浮选中的新型捕收剂提供有用的线索。

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