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Design and synthesis of water-soluble chelating polymeric materials for heavy metal ion sequestration from aqueous waste

机译:水溶性螯合聚合物材料的设计与合成含水废物的重金属离子封存

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Sequestration and removal of dissolved heavy metal ions from aqueous waste streams is a challenging task. Ethylenediaminetetraacetic acid (EDTA) is a hexadentate chelating ligand capable of forming 1:1 complex with various heavy metal ions while iminodiacetic acid (IDA) is analogous to half a unit of EDTA. A new styrene based monomer M1 bearing dimethyl iminodiacetate group was designed and synthesized in good yield to meet this objective. Free radical polymerization of M1 generated the homopolymer, which upon base hydrolysis generated the water-soluble chelating homopolymer P10, bearing sodium salt of IDA as the chelating group. The overall yield of P10 was 76.80% and the solubility was 5 mg/mL at room temperature. The water soluble polymer P10 was investigated for its ability to bind various heavy metal ions by UV-vis spectroscopy and was found to efficiently sequester Cu2+, Cd2+, Zn2+, Pb2+, Ni2+, Co2+, Cr3+, Fe2+ and Fe3+. The effect of pH on Cu2+ binding with P10 showed that every two IDA bearing monomeric repeat units binds with one Cu2+ ion at pH 7 suggesting that it forms complexes analogous to EDTA. Thermogravimetric analysis showed that the synthesized polymer possesses high thermal stability up to 400 degrees C. The potential for recovery and reuse of the polymer has been demonstrated with Cu2+ ion. The reported results suggest that this water-soluble chelating homopolymer is an excellent material with very high potential for application in wastewater treatment.
机译:从废物流水溶液中螯合和除去溶解的重金属离子是一个具有挑战性的任务。乙二胺四乙酸(EDTA)是一种六向螯合配体,其能够形成1:1络合物,其各种重金属离子,而亚单乙酸(IDA)类似于EDTA的半单位。设计并合成了一种新的苯乙烯基于亚单体M1轴承的二甲基二甲基乙酯基团以良好的产量来满足该目标。 M1产生的自由基聚合产生均聚物,其基础水解产生水溶性螯合均聚物P10,含有IDA的钠盐作为螯合基团。 P10的总收率为76.80%,在室温下溶解度为5mg / ml。研究水溶性聚合物P10通过UV-Vis光谱研究其粘合各种重金属离子的能力,并发现有效地隔离Cu 2 +,CD2 +,Zn2 +,Pb2 +,Ni2 +,CO 2 +,Cr3 +,Fe2 +和Fe3 +。 pH对Cu2 +与P10结合的影响表明,每两个IDA轴承单体重复单元在pH7时与一个Cu 2 +离子结合,表明它形成类似于EDTA的复合物。热重分析显示,合成的聚合物具有高达400℃的高热稳定性。已经用Cu 2 +离子对恢复和再利用的恢复和再利用的潜力。据报道的结果表明,这种水溶性螯合均聚物是一种优异的材料,具有非常高的废水处理中的应用潜力。

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