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Quantifying indium with ion chromatography in hydro- and biohydrometallurgical leaching solutions

机译:用离子色谱法定量铟和生物液晶晶体浸出溶液中的铟

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摘要

A methodology has been developed to chromatographically quantify indium in polymetallic (bio)hydrometallurgical processing solutions using the Dionex IonPac CS5A column and pyridine-2,6-dicarboxylic acid eluent. Cu(II) and In(III) could be separated by elevating the column temperature to 45 degrees C. The comparatively low stability constant of the In-eluent complex (log K-2 = 3.8) required typical leaching samples to be diluted in the eluent rather than acid or water to overcome ligand competition between components of the sample solution and the eluent. The methodology was applied to leachates from (bio)hydrometallurgical processing of oxidic flue dust residues and sulfidic zinc ores, where both are promising candidates for the recovery of indium from low grade ores and metallurgical wastes. Indium, ferrous iron, ferric iron, copper, zinc, nickel, and manganese concentrations could be simultaneously quantified. The method was found suitable for samples containing at least 0.25 mg/L indium and an iron to indium ratio of up to 100:1.
机译:已经开发了一种方法,用于使用Dionex Ionpac CS5A柱和吡啶-2,6-二羧酸洗脱液进行色谱定量的多种(生物)液压冶金加工溶液中的铟。通过将柱温升高至45℃,可以分离Cu(II)和(III)。在洗脱液复合物(Log K-2 = 3.8)的相对低的稳定性常数需要典型的浸出样品稀释洗脱液而不是酸或水来克服样品溶液和洗脱液组分之间的配体竞争。将该方法应用于来自(生物)氧化烟尘残留物和亚硫酸锌矿石的浸出物,其中两者都是从低级矿石和冶金废物中恢复铟的候选者。可以同时定量铟,铁铁,铁,铜,锌,镍和锰浓度。发现该方法适用于含有至少0.25mg / l铟和铁的样品,铟比例高达100:1。

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