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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Eco-friendly application of p-cresol-melamine-formaldehyde polymer resin as an ion-exchanger and its electrical and thermal study
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Eco-friendly application of p-cresol-melamine-formaldehyde polymer resin as an ion-exchanger and its electrical and thermal study

机译:对甲酚三聚氰胺甲醛聚合物树脂作为离子交换剂的环保应用及其电学和热学研究

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摘要

Polymer resin p-CMF-II was synthesized by the condensation of p-Cresol (p-C) and melamine (M) with formaldehyde (F) in the presence of 2M HCl as catalyst with 2:1:3 molar ratio of reacting monomers. The resin was characterized by elemental, IR and NMR spectra. The crystalline and amorphous nature of the polymer was studied by XRD spectra. The morphology was studied by SEM micrographs. The photoluminescence (Pl) of the polymer was studied by Pl spectra. The electrical property of p-CMF-II polymer was measured over a wide range of temperature (313-423 K).The chelating ion-exchange property of this polymer was studied for seven metal ions viz. Fe (III), Cu (II), Ni (II), Co (II), Zn (II), Cd (II) and Pb (II) ions. The chelating ion-exchange study was carried out over a wide range of pH, shaking time and in media of various ionic strengths. Thermal study of the resin was carried out to determine its mode of decomposition and relative thermal stability. The Freeman-Carroll and Sharp-Wentworth methods have been used in the present investigation to calculate thermal activation energy. The different kinetic parameters such as frequency factor (Z), entropy change (ΔS), free energy change (ΔF) and apparent entropy (S*) have been determined using Freeman-Carroll method.
机译:聚合物树脂p-CMF-II是在2M HCl作为催化剂,反应单体摩尔比为2:1:3的条件下,将对甲酚(p-C)和三聚氰胺(M)与甲醛(F)缩合合成的。该树脂通过元素,IR和NMR光谱表征。通过XRD光谱研究了聚合物的结晶和无定形性质。通过SEM显微照片研究了形态。通过P1光谱研究了聚合物的光致发光(P1)。在较宽的温度范围(313-423 K)下测量了p-CMF-II聚合物的电性能。研究了该聚合物对7种金属离子的螯合离子交换性能。 Fe(III),Cu(II),Ni(II),Co(II),Zn(II),Cd(II)和Pb(II)离子螯合离子交换研究是在很宽的pH范围,振荡时间以及各种离子强度的介质中进行的。进行树脂的热研究以确定其分解方式和相对热稳定性。 Freeman-Carroll和Sharp-Wentworth方法已用于本研究中以计算热活化能。已使用Freeman-Carroll方法确定了不同的动力学参数,例如频率因子(Z),熵变(ΔS),自由能变化(ΔF)和表观熵(S *)。

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