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首页> 外文期刊>Journal of food engineering >Fouling Behavior Of Aqueous Solutions Of Polyphenolic Compounds During Ultrafiltration
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Fouling Behavior Of Aqueous Solutions Of Polyphenolic Compounds During Ultrafiltration

机译:超滤过程中多酚化合物水溶液的结垢行为

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This paper presents the first part of our study on ultrafiltration (UF) of polyphenolic compounds which is relevant to many industrial food and beverage feed streams. Two commercial polyethersulfone (PES) membranes with different cut-off (10 and 100 kg/mol) and one stabilized cellulose (cellulosic) membrane (10 kg/mol) were used. Membrane-solute interactions (adsorptive fouling) and membrane-solute-solute interactions (UF fouling) as well as the effects of pH, foulant concentration and ionic concentration of the solution on fouling were investigated in order to elucidate the fouling mechanism. Significant water flux reductions and changes in membrane surface properties were observed after static adsorption for all membranes. The possible mechanisms for the attractive interactions between polyphenolic compound and membrane are discussed. Results from UF experiments indicate that both reversible and irreversible fouling have contributed to the overall fouling.
机译:本文介绍了我们对多酚类化合物超滤(UF)的研究的第一部分,该超滤与许多工业食品和饮料饲料流有关。使用两种具有不同截留值(10和100 kg / mol)的商业化聚醚砜(PES)膜和一种稳定化的纤维素(纤维素)膜(10 kg / mol)。研究了膜-溶质相互作用(吸附性结垢)和膜-溶质-溶质相互作用(UF结垢)以及溶液的pH,污垢浓度和离子浓度对结垢的影响,以阐明结垢机理。静态吸附所有膜后,观察到显着的水通量减少和膜表面性质的变化。讨论了多酚化合物与膜之间有吸引力的相互作用的可能机理。超滤实验的结果表明,可逆性和不可逆性结垢均对总体结垢有所贡献。

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