含铜(II)的亚硫酸盐 KU-2-8 对吡啶甲酸的吸附作用

H. Altshuler, V. N. Nekrasov, S. Lyrshchikov, O. Altshuler
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The calculation of the equilibrium ionic compositions of KU-2-8 sulfocationite was performed using the selectivity coefficients of binary ion exchanges and the formation constants of complexes of picolinic acid with Cu2+ and H+ cations. Experimental study of the equilibrium distribution of components between aqueous solutions of picolinic acid, copper nitrate, and KU-2-8 sulfocationite was carried out by means of the dynamic method at a temperature of 298 K. Fourier-transform infrared spectroscopy and electron paramagnetic resonance spectroscopy were used, in order to determine the ionic forms of the components contained in the sulfocationite.Results. It was shown that the equilibrium solution contains H+ protons, Cu2+ cations, LH picolinic acid molecules, protonated picolinic acid cations [H2L]+, deprotonated picolinic acid anions L-, Cu2+ complexes with the deprotonated picolinic acid anion [CuL]+, and Cu2+ complexes with two anions of deprotonated picolinic acid [CuL2]. 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引用次数: 0

摘要

研究目的研究 KU-2-8 亚硫酸盐与含有吡啶甲酸和 Cu(II) 的水溶液之间的成分平衡分布;说明吡啶甲酸和 Cu2+ 阳离子固定在 KU-2-8 磺化阳离子交换器中的可能性;计算平衡溶液的成分组成,以便根据二元离子交换的选择性系数和在水中形成此类复合物的常数,获得 KU-2-8 磺酸阳离子交换剂所需的离子组成。方法。使用 HySS 2009 程序(Hyperquad Simulaton and Speciation)计算多组分溶液中各组分的浓度。利用二元离子交换的选择性系数和吡啶甲酸与 Cu2+ 和 H+ 阳离子络合物的形成常数计算了 KU-2-8 亚硫酸盐的平衡离子成分。为了确定亚硫酸盐中所含成分的离子形式,使用了傅立叶变换红外光谱法和电子顺磁共振光谱法。结果表明,平衡溶液中含有 H+ 质子、Cu2+ 阳离子、LH 苦味酸分子、质子化的苦味酸阳离子 [H2L]+、去质子化的苦味酸阴离子 L-、与去质子化的苦味酸阴离子 [CuL]+ 的 Cu2+ 复合物,以及与两个去质子化的苦味酸阴离子 [CuL2] 的 Cu2+ 复合物。在 pH 值为 0 至 0.5 时,溶液中 H+、Cu2+ 和 [H2L]+ 阳离子的浓度明显超过其他成分的浓度。实验证明,picolinic 酸和铜在聚合物相中的浓度比这些成分在水溶液中的浓度高出许多倍。吡啶甲酸和铜(II)的分配系数分别约为 24 和 210。计算得出了 Cu2+、[H2L]+、H+、[CuL]+ 阳离子在聚合物中的浓度与含吡啶甲酸平衡溶液 pH 值的关系。离子交换剂中所有阳离子浓度的实验数据在测量误差范围内都在计算成分的区间内。建议将 KU-2-8 亚硫酸盐作为获得基于吡啶甲酸和 Cu2+ 阳离子的药物的容器。研究表明,二元离子交换的选择性系数和 [H2L]+、[CuL]+ 复合物的形成常数可用来预先计算平衡溶液的离子成分,从而获得所需的亚硫酸盐成分。
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Sorption of picolinic acid by Cu(II)-containing sulfocationite KU-2-8
Objectives. To study the equilibrium distribution of components between KU-2-8 sulfocationite and an aqueous solution containing picolinic acid and Cu(II); to show the possibility of immobilization of cations of picolinic acid and Cu2+ in sulfonic cation exchanger KU-2-8; to calculate the component compositions of the equilibrium solution, in order to obtain the required ionic composition of the KU-2-8 sulfonic cation exchanger according to the selectivity coefficients of binary ion exchange, and the constants of formation of such complexes in water.Methods. The concentrations of the individual components in multicomponent solutions were calculated using the HySS 2009 program (Hyperquad Simulaton and Speciation). The calculation of the equilibrium ionic compositions of KU-2-8 sulfocationite was performed using the selectivity coefficients of binary ion exchanges and the formation constants of complexes of picolinic acid with Cu2+ and H+ cations. Experimental study of the equilibrium distribution of components between aqueous solutions of picolinic acid, copper nitrate, and KU-2-8 sulfocationite was carried out by means of the dynamic method at a temperature of 298 K. Fourier-transform infrared spectroscopy and electron paramagnetic resonance spectroscopy were used, in order to determine the ionic forms of the components contained in the sulfocationite.Results. It was shown that the equilibrium solution contains H+ protons, Cu2+ cations, LH picolinic acid molecules, protonated picolinic acid cations [H2L]+, deprotonated picolinic acid anions L-, Cu2+ complexes with the deprotonated picolinic acid anion [CuL]+, and Cu2+ complexes with two anions of deprotonated picolinic acid [CuL2]. The concentration of H+, Cu2+, and [H2L]+ cations in the solution significantly exceeds the concentration of other components at pH values from 0 to 0.5. The content of [CuL]+ cations and neutral complexes [CuL2] increases significantly in the solution, while the [H2L]+ cations disappear at pH greater than 1. It was experimentally established that the concentrations of picolinic acid and copper in the polymer phase are many times higher than the concentrations of these components in an aqueous solution. The partition coefficients are about 24 and 210 for picolinic acid and Cu(II), respectively. The calculated dependencies of the concentrations of Cu2+, [H2L]+, H+, [CuL]+ cations in the polymer vs pH of an equilibrium solution containing picolinic acid were obtained. The experimental data on the concentrations of all cations in the ion exchanger is in the intervals of the calculated compositions within the limits of measurement errors.Conclusions. KU-2-8 sulfocationite is proposed as a container for obtaining drugs based on picolinic acid and Cu2+ cations. It was shown that the selectivity coefficients of binary ion exchanges and the formation constants of [H2L]+, [CuL]+ complexes can be used to precalculate the ionic compositions of the equilibrium solution, in order to obtain the required compositions of the sulfocationite.
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