用氨基膦离子交换剂从水介质中分离脂肪族氨基酸

L. P. Bondareva, E. A. Zagorulko, A. V. Astapov
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引用次数: 0

摘要

研究了氨基膦离子交换剂对脂肪族氨基酸甘氨酸和α-丙氨酸的吸附,并用动力学方程描述了其吸附动力学。在设计的固定离子交换层实验装置上进行了实验研究,其中纯化和再生溶液在不同方向上通过吸附层。非均相离子交换过程包括液相中吸附离子向颗粒表面的运输和脱附离子的去除、相间转移、颗粒内吸附离子和脱附离子的扩散(因为吸附剂的所有官能团并非都在表面上)以及可逆的离子交换反应。Thomas模型的动力学方程考虑了多阶段吸附,并充分描述了组分的萃取程度与溶液与离子交换层接触时间的依赖关系。考虑到固定载荷下离子交换器层间通道和颗粒间扩散阻力对动力学过程的影响,对Thomas模型方程进行了现代化的改进。将改进后的模型用于描述氨基膦离子交换器中脂肪族氨基酸的离子交换动力学,并展示了用一维毛细管流动模型来估计离子交换器层通道中流体运动时扩散阻力的可能性。计算结果与实验结果吻合,证明了不同浓度的水溶液中脂肪族氨基酸的吸附效果。结果表明,改进后的模型充分描述了在不同进料速率下,氨基酸萃取程度与溶液与聚两性石层接触时间的关系。
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Separation of aliphatic amino acids from aqueous media with an aminophosphonic ion exchanger
The sorption of the aliphatic amino acids glycine and α-alanine by an aminophosphonic ion exchanger is studied and the dynamics of sorption is described using a kinetic equation. Experimental studies were carried out on a designed experimental setup with a fixed ion exchanger layer, in which the purified and regenerating solutions are passed through the sorbent layer in various directions. The heterogeneous ion exchange process includes the transport of sorbent ions in the liquid phase to the grain surface and the removal of desorbed ions from it, interphase transfer, diffusion of sorbed and desorbed ions inside the grain, since not all functional groups of the sorbent are localized on the surface, and a reversible ion exchange reaction. The kinetic equation of the Thomas model takes into account the multistage sorption and adequately describes the dependence of the degree of extraction of the component on the duration of contact of the solution with the ion exchanger layer. The equation of the Thomas model has been modernized taking into account the effect on the dynamics of the process of diffusion resistances in the channels of the layer and the grains of the ion exchanger in a column with a fixed loading. The upgraded model is applied to describe the dynamics of ion exchange of aliphatic amino acids on an aminophosphonic ion exchanger and the possibility of using a one-dimensional capillary flow model to estimate the diffusion resistance during fluid movement in the channels of the ion exchanger layer is shown. The agreement of the calculated and experimental output curves of sorption of aliphatic amino acids from aqueous solutions of various concentrations has been verified. It is shown that the upgraded model adequately describes the dependence of the degree of amino acid extraction on the duration of contact of the solution with the polyampholite layer at different feed rates of the purified solution.
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