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Anti-fouling properties of poly(acrylic acid) grafted ultrafiltration membranes - experimental and theoretical study

机译:聚丙烯酸接枝超滤膜的防污性能-实验与理论研究

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Grafting of ultrafiltration membranes with polyelectrolyte chains is considered as an anti-fouling treatment. In this research, grafting of poly(acrylic acid) chains to the surface of polypropylene ultrafiltration membrane was obtained by a Fenton-type reaction. Due to the surface modification treatment, we observe a decrease of susceptibility to particulate fouling of the modified membranes. The improvement of membrane properties is observed as a decrease of silica deposited on the surface of membranes in a given time of ultrafiltration process. This effect is exceptionally visible at high pH of filtered suspension. The experimental results have been supported by the numerical modeling of dynamics of polyelectrolyte chain anchored to the membrane surface. This model (based on coarse grained molecular dynamics) allowed us to obtain the dependence of the repulsive force between the membrane and particle on their distance. Considering the value of this force, together with the classical DLVO interactions (van der Waals force, electric double layer force) we were able to predict the stability of suspension in the vicinity of the membrane surface and thus the susceptibility of membrane to fouling.
机译:用聚电解质链接枝超滤膜被认为是一种防污处理。在这项研究中,通过Fenton型反应将聚(丙烯酸)链接枝到聚丙烯超滤膜的表面。由于进行了表面改性处理,我们发现改性膜对颗粒结垢的敏感性降低。在给定的超滤过程中,观察到膜性质的改善是由于沉积在膜表面的二氧化硅减少。在高pH值的悬浮液中,这种效果尤为明显。锚固在膜表面的聚电解质链的动力学数值模型为实验结果提供了支持。该模型(基于粗粒分子动力学)使我们能够获得膜与颗粒之间的排斥力与它们之间距离的依赖性。考虑到此力的值,再加上经典的DLVO相互作用(范德华力,双电层力),我们能够预测膜表面附近悬浮液的稳定性,从而预测膜对结垢的敏感性。

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