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首页> 外文期刊>Journal of Membrane Science >A unified model for flux prediction during batch cell ultrafiltration
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A unified model for flux prediction during batch cell ultrafiltration

机译:批细胞超滤过程中通量预测的统一模型

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摘要

An analysis of the flux decline encountered during ultrafiltration (UF) in a batch cell is presented by including the combined influence of the osmotic pressure and the gel layer. A predictive model for the flux decline in unstirred and stirred batch cell UF processes is developed by unifying the osmotic pressure and gel layer models. UF experiments were performed in a batch cell with polymeric solutes (PEG, dextran and PVA) and a protein (BSA), ranging widely in molecular weights and physico-chemical properties, under various operating conditions (pressure, solution pH, and stirrer speed). The present unified model predictions match closely with the experimental flux behaviour for all cases, while individual osmotic pressure and gel layer models are found to be inadequate.
机译:通过包括渗透压和凝胶层的综合影响,对分批池超滤(UF)过程中遇到的通量下降进行了分析。通过统一渗透压和凝胶层模型,开发了未搅拌和搅拌的分批超滤过程中通量下降的预测模型。 UF实验是在具有各种聚合物溶质(PEG,右旋糖酐和PVA)和一种蛋白质(BSA)的批处理池中进行的,在各种操作条件(压力,溶液pH值和搅拌速度)下,分子量和理化性质范围广泛。目前的统一模型预测与所有情况下的实验通量行为都非常吻合,而单独的渗透压和凝胶层模型却发现不足。

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