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Rejection of pharmaceutically active compounds by forward osmosis: Role of solution pH and membrane orientation

机译:正渗透抑制药物活性化合物的作用:溶液pH值和膜取向的作用

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The effects of feed solution pH and membrane orientation on water flux and the rejection of carbamaz-epine and sulfamethoxazole were investigated using a bench scale forward osmosis (FO) system. Water flux was pH-dependent in both membrane orientations. In addition, water flux increased while the specific reverse salt flux and hydrogen ion flux decreased with increasing feed solution pH. Water flux was lower in the normal FO mode compared to that in the pressure retarded osmosis (PRO) mode because osmotic pressure differential was reduced due to the internal concentration polarisation (ICP) phenomenon. The rejection of neutral carbamazepine was generally pH independent in both membrane orientations. The rejection of carbamazepine in the PRO mode was lower than that in the FO mode due to the higher concentration gradient caused by concentrative ICP in porous supporting layer. Steric hindrance was probably the main separation mechanism for the neutral carbamazepine in the FO process. On the other hand, the rejection of sulfamethoxazole was significantly affected by the feed solution pH in both membrane orientations. Variation in the rejection sulfamethoxazole could be attributed to the electrostatic repulsion between the negatively charged FO membrane surface and varying effective charge of the sulfamethoxazole molecule.
机译:使用台式正向渗透(FO)系统研究了进料溶液的pH值和膜取向对水通量的影响,以及卡巴马-肾上腺素和磺胺甲恶唑的截留率。在两个膜取向上,水通量均取决于pH。此外,随着进料溶液pH值的增加,水通量增加,而比反盐通量和氢离子通量降低。正常FO模式下的水通量比压力渗透(PRO)模式下的水通量低,因为渗透压差由于内部浓度极化(ICP)现象而减小。中性卡马西平的排斥通常在两个膜方向上都不依赖于pH。卡马西平在PRO模式下的排斥率低于FO模式,这是由于多孔支撑层中ICP引起的更高浓度梯度所致。立体位阻可能是FO过程中中性卡马西平的主要分离机理。另一方面,在两个膜取向上,磺胺甲恶唑的排阻都受到进料溶液pH的显着影响。磺胺甲基异恶唑的排斥反应的变化可归因于带负电荷的FO膜表面与磺胺甲基异恶唑分子变化的有效电荷之间的静电排斥。

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