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Exploring the favorable ion-exchange ability of phthalylated cellulose biopolymer using thermodynamic data

机译:利用热力学数据探索邻苯二甲酸纤维素生物聚合物的良好离子交换能力

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A phthalylated ion-exchange biopolymer was obtained by adding cellulose to molten phthalic anhydride in a quasi solvent-free procedure. Through this route 2.99 ± 0.07 mmol g~(-1) of pendant groups containing ester and carboxylic acid moieties were incorporated into the polymeric structure that was characterized by elemental analysis, solid-state carbon nuclear magnetic resonance (CP/MAS), infrared spectroscopy, X-ray diffraction, and thermogravimetry. The chemically modified polysaccharide is able to exchange cations from aqueous solution as demonstrated by batchwise methodology. The data were adjusted to a modified Langmuir equation to give 2.43 ± 0.12 and 2.26 ± 0.11 mmol g~(-1) for divalent cobalt and nickel cations, respectively. The net thermal effects obtained from calorimetric titration measurements were also adjusted to a modified Langmuir equation, and the enthalpy of the interaction was calculated to give endothermic values of 2.11 ± 0.28 and 2.50 ± 0.31 kJ mol~(-1) for these cations, respectively. The spontaneity of this ion-exchange process is reflected in negative Gibbs energy and with a contribution of positive entropic values. This set of thermodynamic data at the solid-liquid interface suggests a favorable ion-exchange process for this anchored biopolymer for cation exchange from the environment.
机译:通过以准无溶剂的方法将纤维素添加到熔融的邻苯二甲酸酐中来获得邻苯二甲酸化的离子交换生物聚合物。通过这种途径,将2.99±0.07 mmol g〜(-1)含酯和羧酸基团的侧基引入聚合物结构,通过元素分析,固态碳核磁共振(CP / MAS),红外光谱进行表征,X射线衍射和热重分析。化学修饰的多糖能够从水溶液中交换阳离子,如分批方法所示。将数据调整为修正的Langmuir方程,分别得到二价钴和镍阳离子的2.43±0.12和2.26±0.11 mmol g〜(-1)。还将从量热滴定测量中获得的净热效应调整为一个修正的Langmuir方程,并计算了相互作用的焓,得出这些阳离子的吸热值分别为2.11±0.28和2.50±0.31 kJ mol〜(-1)。 。这种离子交换过程的自发性体现在负吉布斯能量和正熵值的贡献上。固液界面上的这组热力学数据表明,这种锚定的生物聚合物从环境中进行阳离子交换是有利的离子交换过程。

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