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Coupled model of extended Nernst-Planck equation and film theory in nanofiltration for xylo-oligosaccharide syrup

机译:低聚糖糖浆的纳滤扩展Nernst-Planck方程和膜理论的耦合模型

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摘要

This work presents an observed retention (R_(obs)) model for xylo-oligosaccharides (XOs) syrup in nanofiltration (NF) process. A commercial-purchased HDS-12-2540 NF membrane was operated in batch recycling model. The volume flux (J_v), trans-membrane pressure (ΔP), solute concentrations in feed solution (C_b) and permeate solution (C_p) were collected and the experimental R_(obs) was obtained. On the basis of the extended Nernst-Planck equation and film theory, a theoretical R_(obs) model was established. The model parameters including solute permeability (P_s) and reflection coefficient (σ) for arabinose, xylose and xylobiose were estimated by curving fitting using genetic algorithm (GA) method. It was found that the reflection coefficient (σ) for arabinose (0.895) was higher than that for xylose (0.776), which indicated that the membrane retention to arabinose was stronger. Membrane structural parameters, such as ratio of solute radius to pore radius (λ) and ratio of effective membrane porosity to membrane thickness (A_k/Δ_x), were also estimated using steric-hindrance pore (SHP) model.
机译:这项工作提出了纳滤(NF)过程中木糖寡糖(XOs)糖浆的观察到的保留(R_(obs))模型。商业购买的HDS-12-2540 NF膜以批量回收模式运行。收集体积通量(J_v),跨膜压力(ΔP),进料溶液(C_b)和渗透液(C_p)中的溶质浓度,并获得实验R_(obs)。在扩展的Nernst-Planck方程和薄膜理论的基础上,建立了理论R_(obs)模型。通过遗传算法(GA)进行曲线拟合,估算了模型参数,包括阿拉伯糖,木糖和木糖的溶质渗透率(P_s)和反射系数(σ)。发现阿拉伯糖(0.895)的反射系数(σ)高于木糖(0.776)的反射系数,这表明膜对阿拉伯糖的保留力更强。膜结构参数,如溶质半径与孔半径(λ)之比以及有效膜孔隙率与膜厚度之比(A_k /Δ_x),也可以使用空间阻滞孔(SHP)模型进行估算。

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