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首页> 外文期刊>Separation and Purification Technology >Selective recovery of gold(III) via continuous counter-current foam separation from hydrochloric acid solution - Effects of foam and column sizes on separation performance
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Selective recovery of gold(III) via continuous counter-current foam separation from hydrochloric acid solution - Effects of foam and column sizes on separation performance

机译:通过从盐酸溶液中连续逆流分离泡沫选择性回收金(III)-泡沫和色谱柱尺寸对分离性能的影响

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摘要

Continuous counter-current foam separation with simultaneous injections of metal and surfactant solutions into rising foam bed was applied to Au(III) recovery from hydrochloric acid solutions containing binary metals of Au(III) and Cu(II). A nonionic surfactant, poly(oxyethylene) nonylphenyl ether, used in this study showed a strong affinity to Au(III) and played a double role of foam-producer and metal collector. The effect of an average foam diameter (from 0.026 to 0.28 cm) was investigated on the separation performance. It is noteworthy that a larger foam enhances gravitational drainage dramatically while decreasing of the adsorption capacity for Au(III). Increasing the foam diameter from 0.07 to 0.22 cm improves Au(III)/Cu(II) separation factor successfully from 64 to 1060 under keeping the complete recovery of Au(III). Based on the results obtained, a parameter chart of the operational conditions on the separation performance was presented. Usage of a larger foam is essential for the metal separation under the optimized counter-current flow balance in the foam bed. Furthermore, enlargement of a bubble column diameter from 3.0 to 6.0 cm enhances the separation factor as much to 3840 while keeping the complete recovery of Au(III), indicating that the size of the column is also crucial to the separation.
机译:连续逆流分离泡沫,同时将金属和表面活性剂溶液同时注入上升的泡沫床中,用于从含Au(III)和Cu(II)二元金属的盐酸溶液中回收Au(III)。在这项研究中使用的非离子表面活性剂聚氧乙烯壬基苯基醚显示出对Au(III)的强亲和力,并起着泡沫产生剂和金属捕集剂的双重作用。研究了平均泡沫直径(0.026至0.28 cm)对分离性能的影响。值得注意的是,较大的泡沫大大增强了引力排水,同时降低了对Au(III)的吸附能力。在保持Au(III)完全回收的前提下,将泡沫直径从0.07 cm增加到0.22 cm可以将Au(III)/ Cu(II)的分离系数成功地从64提高到1060。根据获得的结果,给出了操作条件对分离性能的参数图。在泡沫床中优化的逆流平衡下,使用较大的泡沫对于金属分离至关重要。此外,将鼓泡塔直径从3.0 cm扩大到6.0 cm可以将分离系数提高到3840,同时保持Au(III)的完全回收,这表明该塔的尺寸对于分离也至关重要。

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