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A comparative study of Schiff base chelating resins: synthesis, uptake of heavy metal ions, and thermal studies

机译:席夫碱螯合树脂的比较研究:合成,重质金属离子吸收和热研究

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摘要

Two new chelating resins (Rciaa91 and Rciaa73) with different compositional chelating groups and degree of cross-linking were prepared by free radical copolymerization of Schiff bases obtained from condensation reaction of cinnamaldehyde (ci) with anthranilic acid (aa) and 1,4-phenylenediamine (pn) monomers. The synthesized materials were characterized using CHN analyses, FTIR, 1H-NMR, and thermal analyses (TGA, DTA). Batch technique was applied, and the contact time, pH and initial concentration of the metal ions were investigated as factors affecting the uptake behavior. The results obtained indicated that the chelating resin with larger compositional ratio of chelating moieties and lower degree of cross-linking showed lower optimum reaction time and higher uptake affinity towards the metal ions Cu(II), Cd(II), Co(II), Zn(II), Hg(II), and Pb(II), under the same conditions. Both the chelating resins showed uptake behavior of the metal ions in the following order Hg2+ > Cu2+ > Zn2+>Pb2+>Co2+ > Cd2+ each metal at its optimum pH and at the same reaction time and ion concentration. The thermal degradation behavior and stability of the resins were investigated by using non-isothermal thermogravimetric analysis (TGA/DTG/DTA), at 10 °C min-1 heating rate and under nitrogen. The Coats-Redfern method was used to evaluate the kinetic and thermodynamic parameters (ΔG*, ΔH* and ΔS*) for the prominent degradation steps in the TGA curves at 450-660 °C range.
机译:通过用肉桂醛(CI)的缩合反应与蒽酸(AA)和1,4-苯二胺,通过自由基共聚合制备具有不同成分螯合基团和交联度的新螯合树脂(RCIAA91和RCIAA73)和交联度。 (PN)单体。使用CHN分析,FTIR,1H-NMR和热分析(TGA,DTA)表征合成材料。施用批量技术,并研究了金属离子的接触时间,pH和初始浓度作为影响摄取行为的因素。得到的结果表明,具有螯合部分和较低的交联度和较低的交联的螯合树脂显示出较低的最佳反应时间和朝向金属离子Cu(II),CD(II),CO(II)的更高摄取亲和力,在相同条件下,Zn(II),Hg(II)和Pb(II)。螯合树脂在其最佳pH和相同的反应时间和离子浓度下,螯合树脂在下列顺序HG2 +> Cu 2 +> Zn2 +> PB2 +> CO 2 +> CD2 + CD2 + CD2 +上的摄取行为。研究了在10℃min-1加热速率和氮气下使用非等温热重分析(TGA / DTG / DTA)来研究树脂的热降解行为和稳定性。用于在450-660°C范围内的TGA曲线中突出的劣化步骤来评估动力学和热力学参数(ΔG*,ΔH*和ΔS*)的动力学和热力学参数(ΔG*,ΔH*和ΔS*)。

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