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Cross-flow ultrafiltration of protein solutions through unmodified and surface functionalized polyethersulfone membranes - Effect of process conditions on separation performance

机译:通过未修饰的和表面功能化的聚醚砜膜对蛋白质溶液进行错流超滤-工艺条件对分离性能的影响

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In the present work, polyethersulfone ultrafiltration membranes were UV-initiated grafted with poly(ethylene glycol) methacrylate by varying the UV irradiation dose. The flux and selectivity performance of the prepared low-fouling thin-layer hydrogel composite membranes were tested in cross-flow filtration experiments and compared to unmodified commercial membranes with similar properties (water permeability and molecular weight cut-off). Here, the effects of feed composition (single proteins and protein mixtures), pH and cross-flow velocity were evaluated. Furthermore, the stability of these membranes was tested during three cycles of ultrafiltration and cleaning. The results showed that the performed surface hydrophilization increased the permeate flux and stabilized the membrane selectivity (relevant for separation of protein mixtures). The proteins charge was still important for flux and rejection during ultrafiltration with functionalized membranes. Increasing cross-flow velocity was more efficient for these membranes, since fouling effects were minimized by the grafted hydrogel layer. Furthermore, the membrane stability after three cycles of ultrafiltration and chemical cleaning at pH = 13 was proven and the cleanability of the hydrogel composite ultrafiltration membranes was much better compared to that of comparable unmodified polyethersulfone ultrafiltration membranes.
机译:在本工作中,通过改变紫外线照射剂量,将聚醚砜超滤膜与聚甲基丙烯酸乙二醇酯接枝。在横流过滤实验中测试了制备的低污染薄层水凝胶复合膜的通量和选择性性能,并将其与具有类似特性(水渗透性和分子量截留值)的未改性商业膜进行了比较。在此,评估了进料组成(单一蛋白质和蛋白质混合物),pH和错流速度的影响。此外,在超滤和清洁的三个循环中测试了这些膜的稳定性。结果表明,进行的表面亲水化增加了渗透通量并稳定了膜的选择性(与分离蛋白质混合物有关)。在功能化膜超滤过程中,蛋白质电荷对于通量和截留率仍然很重要。对于这些膜,增加横流速度更为有效,因为通过接枝水凝胶层可将污垢效应降至最低。此外,在pH = 13的超滤和化学清洗三个循环后,膜的稳定性得到了证明,与可比的未改性聚醚砜超滤膜相比,水凝胶复合超滤膜的清洗性要好得多。

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