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首页> 外文期刊>Journal of Membrane Science >PERFORMANCE EVALUATION OF SURFACE HYDROPHILIZED NOVEL ULTRAFILTRATION MEMBRANES USING AQUEOUS PROTEINS
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PERFORMANCE EVALUATION OF SURFACE HYDROPHILIZED NOVEL ULTRAFILTRATION MEMBRANES USING AQUEOUS PROTEINS

机译:使用蛋白质对表面亲水化新型超滤膜的性能评估

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The performance of four commercial ultrafiltration membranes with the same nominal molecular weight cut-off (MWCO) but with different surface hydrophilicity was compared with attention to flux, water flux recovery after cleaning, protein deposition as a function of pH, pressure, and ionic strength using 0.1 wt% aqueous bovine albumine solution. The membranes modified for greater hydrophilicity (Biomax, OMEGA) resulted in enhanced UF flux with slower flux loss and lower solute resistance in comparison with unmodified membranes (PFGC, NOVA) at all experimental conditions tested (salt, pH, pressure) with similar protein retention. The results also indicate that this hydrophilic character is related to the flux decline. However, these hydrophilic membranes were not necessarily easier to clean. The intrinsic properties of the membrane surface such as surface charge, hydrophobicity appear to determine the first layer of protein deposition which is difficult to remove. Proteins deposited at low pressure were more difficult to remove by chemical cleaning than those at higher pressure, presumably due to differences in adsorption configuration (i.e. multi-point adsorption at low pressure) at the membrane surface. Differences in initial membrane flux ranging 222-620 l/m2h had little effect on final flux during protein UF under hydrodynamic conditions used in this work. [References: 19]
机译:比较了四种具有相同标称截留分子量(MWCO)但具有不同表面亲水性的商业超滤膜的性能,并关注通量,清洗后的水通量回收率,蛋白质沉积随pH,压力和离子强度的变化使用0.1重量%的牛白蛋白水溶液。与未经修饰的膜(PFGC,NOVA)相比,在所有测试条件下(盐,pH,压力),具有类似蛋白质保留率的修饰膜均具有更高的亲水性(Biomax,OMEGA),从而提高了UF通量,具有更低的通量损失和更低的溶质抗性。 。结果还表明,该亲水特性与通量下降有关。但是,这些亲水膜不一定容易清洗。膜表面的固有特性(例如表面电荷,疏水性)似乎决定了难以去除的蛋白质沉积的第一层。低压沉积的蛋白质比高压沉积的蛋白质更难通过化学清洗去除,这可能是由于膜表面的吸附构型(即低压下的多点吸附)不同所致。在这项工作中使用的流体动力学条件下,蛋白质超滤期间初始膜通量的差异在222-620 l / m2h范围内对最终通量影响很小。 [参考:19]

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