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CUSTOMISING COPPER-IRON SELECTIVITY USING MODIFIED ALDOXIME EXTRACTANTS: PILOT-PLANT EVALUATION

机译:使用改性的醛肟提取物定制铜 - 铁选择性:试验植物评估

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In most copper solvent-extraction operations, an important consideration in choice of extractant is the requirement for high selectivity of copper over iron. Ester-modified aldoxime extractants presently offer the best Cu:Fe selectivity. In some plants, however, the process feed liquors contain significant amounts of manganese but little iron. Although manganese is not chemically extracted by oximes, trace amounts are carried over to the electrowinning circuit by physical entrainment. This may result in anodic oxidation of manganese which, in turn, can cause oxidative degradation of the organic phase when returned to the solvent-extraction circuit in the spent electrolyte. Many of these operations prefer to operate with higher levels of iron reporting to the advance electrolyte, as appropriate control of the Fe(II)/Fe(III) couple will ensure that manganese remains in the benign Mn(II) form. A new reagent, LS 4202, designed by Cytec, now offers the possibility of tailoring the iron co-extraction, so that appropriate Cu:Fe selectivity can be achieved in the solvent-extraction operation to maintain an electrolyte Fe:Mn mass ratio of >10:l, while retaining the other benefits offered by ester-modified aldoximes. The results of an integrated solvent extraction-electrowinning pilot-plant trial are presented, in which the performances of the conventional extractants ACORGA~R M.5774 and LIX~R 984N are compared with LS 4202. The Cu:Fe selectivity is demonstrated, along with results on the transfer of other impurities to the advance electrolyte.
机译:在大多数铜溶剂 - 提取操作中,选择萃取剂的重要考虑因素是对铁上铜选择性的要求。酯改性的醛肟提取物目前提供最佳Cu:Fe选择性。然而,在一些植物中,过程饲料液含有大量的锰但小铁。虽然锰没有通过肟化学提取,但是通过物理夹带地将痕量的量延伸到电滤网电路。这可能导致锰的阳极氧化,当返回到所花电解质中时,载体会导致有机相的氧化降解。这些操作中的许多操作更喜欢以更高水平的铁报告对预先电解质进行操作,因为对Fe(II)/ Fe(III)夫妇的适当控制将确保锰仍然存在于良性MN(II)形式中。由Cytec设计的新试剂LS 4202现在提供了定制铁共萃的可能性,因此可以在溶剂 - 提取操作中实现适当的Cu:Fe选择性以保持电解质Fe:Mn质量比 10:L,同时保留酯改性醛氧肟提供的其他益处。提出了一体化溶剂萃取 - 电陶油宁试点试验试验试验的结果,其中常规提取物AGORGA〜R M.5774和LIX〜R 984N的性能与LS 4202进行了比较。CU:Fe选择性沿结果对前进电解质的其他杂质转移。

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