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Sorption kinetics of strontium in porous hydrous ferric oxide aggregates I. The Donnan diffusion model

机译:多孔水合氧化铁中锶的吸附动力学I. Donnan扩散模型

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Sorption of ions by hydrous ferric oxide (HFO) often shows a fast initial sorption reaction followed by a much slower sorption process. The second step is diffusion-controlled and can continue for days or months before equilibrium is reached. In this paper, we demonstrate that the diffusion rate may be explained by electrostatic interactions. The internal and external surfaces of HFO are generally positively charged and therefore repel cations. This can result in extremely low cation concentrations in pores, and therefore a significant reduction in pore diffusion rate. The theory is demonstrated here for sorption of Sr2+ in HFO aggregates. The ion concentrations in the pore space are calculated using a Donnan model and diffusion is calculated front the Donnan concentration and potential gradients. This diffusion model is compared with nonelectrostatic pore diffusion, which does not take electrostatic interactions into account. The Donnan model predicts very low concentrations of Sr2+ in the pores and diffusion rates that are up to 8000 times lower than predicted with a nonelectrostatic model. (C) 2004 Elsevier Inc. All rights reserved.
机译:含水三氧化二铁(HFO)对离子的吸附通常显示出快速的初始吸附反应,然后是缓慢得多的吸附过程。第二步是扩散控制的,可以持续数天或数月才能达到平衡。在本文中,我们证明了扩散速率可以用静电相互作用来解释。 HFO的内表面和外表面通常带正电,因此可以排斥阳离子。这会导致孔中的阳离子浓度极低,从而显着降低孔扩散速率。此处论证了HFO聚集体中Sr2 +的吸附理论。使用Donnan模型计算孔空间中的离子浓度,并在Donnan浓度和电势梯度之前计算扩散。将该扩散模型与不考虑静电相互作用的非静电孔扩散进行了比较。 Donnan模型预测孔中Sr2 +的浓度非常低,扩散速率比非静电模型低8000倍。 (C)2004 Elsevier Inc.保留所有权利。

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