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Dendrimer Enhanced Ultrafiltration. 1. Recovery of Cu(II) from Aqueous Solutions Using PAMAM Dendrimers with Ethylene Diamine Core and Terminal NH_2 Groups

机译:树枝状聚合物增强超滤。 1.使用带有乙二胺核和末端NH_2基团的PAMAM树状聚合物从水溶液中回收Cu(II)

摘要

This article discusses the feasibility of using dendrimer enhanced ultrafiltration (DEUF) to recover Cu(II) from aqueous solutions. Building upon the results of fundamental investigations of Cu(II) binding to PAMAM dendrimers with ethylenediamine (EDA) core and terminal NH_2 groups, we combine (i) dead-end ultrafiltration (UF) experiments with (ii) atomic force microscopy (AFM) characterization of membrane fouling to assess the feasibility of using DEUF to recover Cu(II) from aqueous solutions. On a mass basis, the Cu(II) binding capacities of the EDA core PAMAM dendrimers are much larger and more sensitive to solution pH than those of linear polymers with amine groups. The dendrimer−Cu(II) complexes can be efficiently separated from aqueous solutions by ultrafiltration. The metal ion laden dendrimers can be regenerated by decreasing the solution pH to 4.0; thus enabling the recovery of the bound Cu(II) ions and recycling of the dendrimers. The UF measurements and AFM characterization studies show that EDA core PAMAM dendrimers with terminal NH_2 groups have very low tendency to foul the commercially available regenerated cellulose (RC) membranes evaluated in this study. The overall results of these experiments suggest that DEUF is a promising process for recovering metal ions such as Cu(II) from aqueous solutions.
机译:本文讨论了使用树枝状聚合物增强超滤(DEUF)从水溶液中回收Cu(II)的可行性。基于铜(II)与带有乙二胺(EDA)核心和末端NH_2基团的PAMAM树状大分子结合的基础研究结果,我们将(i)死端超滤(UF)实验与(ii)原子力显微镜(AFM)相结合膜结垢的特性评估,以评估使用DEUF从水溶液中回收Cu(II)的可行性。基于质量,与具有胺基的线性聚合物相比,EDA核心PAMAM树状聚合物的Cu(II)结合能力更大,并且对溶液pH值更敏感。树状聚合物-Cu(II)络合物可通过超滤有效地从水溶液中分离出来。可以通过将溶液的pH降低至4.0来再生负载金属离子的树枝状大分子。因此可以回收结合的Cu(II)离子并回收树枝状聚合物。 UF测量和AFM表征研究表明,带有NH_2末端的EDA核心PAMAM树状聚合物对本研究中评估的市售再生纤维素(RC)膜的污染趋势很低。这些实验的总体结果表明,DEUF是从水溶液中回收金属离子(例如Cu(II))的有前途的方法。

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