Verification of a Combined Fouling Model to Predict Flux Decline during Ultrafiltration of Organic Solutes

I. N. H. M. Amin, A. Mohammad
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Abstract

Studies were conducted to investigate the blocking mechanism and flux decline behavior while treating organic solutes contained in glycerin-water solutions (triglycerides, TG and fatty acid, FA). Two ultrafiltration membranes were tested, polyethersulphone (PES 25 kDa) and polyvinylidenfluoride (PVDF 30 kDa) membranes. Influence of TG and its combination (TG-FA mixtures) as foulant models, pH of feed solutions (3–10) and membrane surface chemistry were investigated. Combined blocking model was applied and the fitting were discriminate that the flux decline of PES membrane was dominated by pore blockage at the early stage and later by cake resistance during the entire filtration time. However, for PVDF membrane, cake formation mechanism was acknowledged as the major contributor to the fouling mechanism for all the parameters tested. On the other hand, the model predicts there are two stages of filtration appeared to occur, involving pore blockage at the early stage followed by cake formation.
预测有机溶质超滤过程中通量下降的联合结垢模型的验证
研究了在处理甘油-水溶液中含有的有机溶质(甘油三酯、TG和脂肪酸、FA)时的阻断机制和通量下降行为。测试了两种超滤膜,聚醚砜(PES 25 kDa)和聚偏氟乙烯(PVDF 30 kDa)膜。研究了TG及其组合(TG- fa混合物)作为污染物模型、饲料溶液pH(3-10)和膜表面化学的影响。采用复合堵塞模型进行拟合,发现在整个过滤时间内,PES膜通量的下降主要是早期的孔隙堵塞,后期的滤饼阻力。然而,对于PVDF膜,在所有测试参数中,饼的形成机制被认为是污染机制的主要贡献者。另一方面,该模型预测了两个阶段的过滤,即早期孔隙堵塞和滤饼的形成。
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