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首页> 外文期刊>Hydrometallurgy >Separation of tungsten and molybdenum using macroporous resin: Competitive adsorption kinetics in binary system
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Separation of tungsten and molybdenum using macroporous resin: Competitive adsorption kinetics in binary system

机译:大孔树脂分离钨和钼:二元体系中的竞争吸附动力学

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摘要

The method using macroporous resin has great potential in separating mixed solution containing a high concentration of both W and Mo. The competitive adsorption kinetics of W and Mo onto the macroporous weak base resin D301 was studied in the present work. Accordingly, the effect of several factors such as concentration, particle size and temperature was assessed on the adsorption kinetics and separation of these two metals. Back-scattering SEM and EDS line scan were performed to study the competitive adsorption behavior of W and Mo, particularly. The macroporous resin D301 exhibits a better selectivity towards W than Mo in the near-neutral solution. The decrease of resin particle size and the increase of temperature are found to increase the adsorption rate and reduce the time required for obtaining the optimum separation results. Furthermore, the adsorption kinetics of W can be expressed by the pseudo-second order model. Such model was successfully modified to describe the Mo adsorption kinetics which is significantly affected by W polyions. Diffusion process was identified as the mechanism controlling the rate of W and Mo adsorption.
机译:使用大孔树脂的方法在分离含有高浓度的W和Mo的混合溶液方面具有很大的潜力。本工作研究了W和Mo在大孔弱碱树脂D301上的竞争吸附动力学。因此,评估了诸如浓度,粒度和温度等几个因素对这两种金属的吸附动力学和分离的影响。进行了反向散射SEM和EDS线扫描,特别是研究了W和Mo的竞争性吸附行为。在接近中性的溶液中,大孔树脂D301对W的选择性比对Mo的更好。发现减小树脂粒度和增加温度可提高吸附速率并减少获得最佳分离结果所需的时间。此外,W的吸附动力学可以用拟二级模型表示。该模型已成功修改以描述受W聚离子影响的Mo吸附动力学。扩散过程被确定为控制W和Mo吸附速率的机制。

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