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Column performance of ion exchange resins with aminophosphonate functional groups for elimination of heavy metals

机译:具有氨基膦酸酯官能团的离子交换树脂消除重金属的柱性能

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The column dynamics of the exchange of heavy metals in multicomponent systems with Cu~(2+), Ni~(2+), Cd~(2+), Zn~(2+), Ca~(2+), Na~(2+), and NH_4~+ ions has been studied. The ion exchangers applied were two commercially available chelating ion exchange resins (Purolite S 940 and S 950) and two experimental resins (Purolite D 3342 and D 3343), all with aminophosphonate functional groups. Experiments comprised pure systems with two, three and four metal species and with simulated industrial wastewaters. Calculation of multicomponent equilibria was based on the surface complexation theory, Prediction of the column performance used either a staged approach or the numerical solution of the differential Column balance. In the latter case simplified approaches for description of sorption kinetics for predominant film or particle diffusion were applied. Kinetic parameters were deduced from simple binary experiments. The prediction of the column performance by means of the differential Column balance led to a partly very satisfactory agreement with experimental data.
机译:Cu〜(2 +),Ni〜(2 +),Cd〜(2 +),Zn〜(2 +),Ca〜(2 +),Na〜的多组分体系中重金属交换的柱动力学(2+)和NH_4〜+离子已被研究。所应用的离子交换剂是两种可商购的螯合离子交换树脂(Purolite S 940和S 950)和两种实验树脂(Purolite D 3342和D 3343),均具有氨基膦酸酯官能团。实验包括具有两种,三种和四种金属种类的纯系统以及模拟的工业废水。多组分平衡的计算基于表面络合理论,色谱柱性能的预测可采用分阶段方法或差分色谱柱平衡的数值解决方案。在后一种情况下,采用了简化的方法来描述主要膜或颗粒扩散的吸附动力学。动力学参数由简单的二元实验推导得出。通过差分色谱柱平衡对色谱柱性能的预测导致了与实验数据的部分非常令人满意的一致性。

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