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A High-Efficiency Approach for the Synthesis of N235-Impregnated Resins and the Application in Enhanced Adsorption and Separation of Vanadium(V)

机译:N235浸渍树脂的高效合成方法及其在钒(V)吸附和分离中的应用

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Trialkylamine (N235)-tributyl phosphate (TBP) impregnated resins (N-TIRs) were prepared, so as to evaluate the effects of the addition of TBP on the preparation and adsorption performance of N235-impregnated resins (NIRs). The results show that TBP can obviously increase the impregnation ratio and shorten the impregnation equilibrium time of the N-TIRs when compared to that of the NIRs (57.73% versus 36.95% and 5 min versus 240 min). It is confirmed that TBP can interact with N235 during the impregnation process, which shorten the adsorption equilibrium time and increases the adsorption capacity of the N-TIRs for V(V) when compared to that of the NIRs (6 h versus 10 h and 50.95 mg·g ?1 versus 46.73 mg·g ?1 ). The kinetics fitting results demonstrate that the adsorption of V(V) onto N-TIRs and NIRs all conform to pseudo-second order kinetic model and chemical reaction is the rate-limiting step of the whole adsorption process. In the meanwhile, the reaction constant ( K s ) implies that the chemical reaction rate of V(V) with the impregnated extractants in N-TIRs is faster than that in NIRs. The N-TIRs present higher stability and selectivity than NIRs. This study manifests that the addition of a secondary reagent may be a potential and novel technique on the preparation of SIRs and the enhancement of adsorption and separation for ions.
机译:制备了三烷基胺(N235)-磷酸三丁酯(TBP)浸渍树脂(N-TIR),以评估TBP的添加对N235浸渍树脂(NIRs)的制备和吸附性能的影响。结果表明,与NIR相比,TBP可以明显提高N-TIR的浸渍率,缩短浸渍平衡时间(57.73%vs 36.95%,5 min vs 240 min)。可以确定的是,TBP可以在浸渍过程中与N235相互作用,与NIR相比(6 h对10 h和50.95),缩短了吸附平衡时间并增加了N-TIR对V(V)的吸附能力。毫克·克?1对46.73毫克·克?1)。动力学拟合结果表明,V(V)在N-TIR和NIR上的吸附均符合拟二级动力学模型,化学反应是整个吸附过程的限速步骤。同时,反应常数(K s)表明,N-TIR中V(V)与浸渍萃取剂的化学反应速率要快于NIR。 N-TIR比NIR具有更高的稳定性和选择性。这项研究表明,添加辅助试剂可能是制备SIR和增强离子吸附和分离的一种潜在且新颖的技术。

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