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Fouling of reverse osmosis membranes by hydrophilic organic matter:implications for water reuse

机译:亲水性有机物污染反渗透膜:对水回用的启示

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Effluent organic matter (EfOM) is suspected as a major cause of fouling of reverse osmosis (RO) membranes in advanced wastewater reclamation.Among the main constituents in EfOM,polysaccharides are the most ubiquitous.The influence of solution chemistry and hydrodynamics on RO membrane fouling with alginate - a model for polysaccharides in secondary wastewater effluent - was systematically investigated.Results of fouling runs with alginate demonstrate that RO membrane fouling increases with decreasing pH,increasing ionic strength,and addition of calcium ions.At fixed solution ionic strength and pH,the presence of divalent calcium ions,at concentrations typical of those found in secondary wastewater effluent,had a dramatic effect on membrane fouling.However,for similar concentrations of divalent magnesium ions,fouling was negligible.The severe fouling in the presence of calcium is attributed to the formation of a thick,dense alginate gel layer on the membrane surface via calcium-alginate complexation and crosslinking (bridging) of alginate macromolecules by calcium.In addition to solution chemistry,hydrodynamic operating conditions - initial permeate flux and crossflow velocity - were also shown to influence RO membrane fouling with alginate.
机译:废水中的有机物(EfOM)被怀疑是高级污水再生中反渗透(RO)膜结垢的主要原因。在EfOM的主要成分中,多糖是最普遍的。溶液化学和流体力学对RO膜结垢的影响用藻酸盐(二次废水中的多糖模型)进行了系统的研究。藻酸盐的结垢实验结果表明,RO膜结垢随着pH降低,离子强度增加和钙离子增加而增加。存在于废水中的典型浓度的二价钙离子对膜结垢具有显着影响。但是,对于类似浓度的二价镁离子而言,结垢可以忽略不计。归因于存在钙时的严重​​结垢。通过藻酸钙在膜表面形成厚而致密的藻酸盐凝胶层除了溶液化学之外,还显示了流体动力学操作条件(初始渗透通量和错流速度)也会影响藻酸盐对RO膜的结垢。

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