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首页> 外文期刊>Journal of Membrane Science >Fouling of reverse osmosis membranes by biopolymers in wastewater secondary effluent: Role of membrane surface properties and initial permeate flux
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Fouling of reverse osmosis membranes by biopolymers in wastewater secondary effluent: Role of membrane surface properties and initial permeate flux

机译:生物聚合物在废水二次流出物中对反渗透膜的污染:膜表面性质和初始渗透通量的作用

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Reverse osmosis (RO) is being increasingly used in treatment of domestic wastewater secondary effluent for potable and non-potable reuse. Among other solutes, dissolved biopolymers, i.e., proteins and polysaccharides, can lead to severe fouling of RO membranes. In this study, the roles of RO membrane surface properties in membrane fouling by two model biopolymers, bovine serum albumin (BSA) and sodium alginate, were investigated. Three commercial RO membranes with different surface properties were tested in a laboratory-scale cross-flow RO system. Membrane surface properties considered include surface roughness, zeta potential, and hydrophobicity. Experimental results revealed that membrane surface roughness had the greatest effect on fouling by the biopolymers tested. Accordingly, modified membranes with smoother surfaces showed significantly lower fouling rates. When Ca~(2+) was present, alginate fouled RO membranes much faster than BSA. Considerable synergistic effect was observed when both BSA and alginate were present. The larger foulant particle sizes measured in the co-existence of BSA and alginate indicate formation of BSA-alginate aggregates, which resulted in greater fouling rates. Faster initial flux decline was observed at higher initial permeate flux even when the flux was measured against accumulative permeate volume, indicating a negative impact of higher operating pressure.
机译:反渗透(RO)越来越多地用于生活污水二次处理中,以用于可饮用水和非饮用水的再利用。在其他溶质中,溶解的生物聚合物(即蛋白质和多糖)会导致RO膜严重结垢。在这项研究中,研究了RO膜表面特性在两种模型生物聚合物牛血清白蛋白(BSA)和藻酸钠的膜污染中的作用。在实验室规模的错流反渗透系统中测试了三种具有不同表面性质的商业反渗透膜。考虑的膜表面性质包括表面粗糙度,ζ电势和疏水性。实验结果表明,被测生物聚合物对膜表面粗糙度的影响最大。因此,具有更光滑表面的改性膜显示出明显较低的结垢率。当存在Ca〜(2+)时,藻酸盐污染RO膜的速度比BSA快得多。当同时存在BSA和藻酸盐时,观察到相当大的协同作用。在BSA和藻酸盐共存时测得的较大污垢粒径表明BSA-藻酸盐聚集体的形成,这导致较高的结垢率。即使在相对于累积渗透物体积测量流量的情况下,在较高的初始渗透物通量下也观察到更快的初始通量下降,这表明较高的工作压力会产生负面影响。

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