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Incorporation of Quorum Sensing Inhibitors onto Reverse Osmosis Membranes for Biofouling Prevention in Seawater Desalination

机译:在反渗透膜上加入群体感应抑制剂以防止海水淡化中的生物污染

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摘要

Membrane biofouling, caused by bacterial biofilm formation is a significant obstacle for membrane filtration processes because it reduces pure water permeability. Recent studies have shown that bacterial communication pathways, known as quorum sensing (QS), trigger biofilm development. QS inhibiting compounds (QSIs) have been identified as an important key to disrupt QS pathways and ultimately reduce biofilm production. In this study, two known QSIs, vanillin and cinnamaldehyde, were physically attached onto polyamide thin-film composite reverse osmosis (RO) membranes to enhance membrane in situ antibiofouling potential. QSI attachment altered the membrane surface contact angle to reflect the property of the QSI, but there were no significant changes in salt rejection and pure water permeability. Under biofouling conditions, the QSI-modified RO membranes experienced a minimal loss in permeate flux compared with one of the control membranes in a high-pressure RO system. QSI attachment significantly reduced polysaccharide production (15%), live bacteria (58%), and dead bacteria (61%) on the membrane surface in the bench-scale biofouling studies using a mixed culture of biofilm forming marine bacteria. Results of this study indicated that QSI membrane modification has the potential to achieve in situ reduction of membrane biofouling for RO seawater desalination.
机译:由细菌生物膜形成引起的膜生物结垢是膜过滤过程的重大障碍,因为它会降低纯水的渗透性。最近的研究表明,称为群体感应(QS)的细菌传播途径会触发生物膜的发育。 QS抑制化合物(QSI)已被认为是破坏QS途径并最终减少生物膜产量的重要关键。在这项研究中,将两种已知的QSI(香草醛和肉桂醛)物理连接到聚酰胺薄膜复合反渗透(RO)膜上,以增强膜的原位生物积垢潜力。 QSI附着改变了膜表面接触角以反映QSI的特性,但除盐率和纯水渗透率没有明显变化。在生物污染条件下,与高压RO系统中的一种控制膜相比,QSI改性的RO膜的通量损失最小。在使用生物膜形成海洋细菌混合培养的台式规模生物污染研究中,QSI附着显着降低了膜表面上的多糖产量(> 15%),活菌(> 58%)和死菌(> 61%)。这项研究的结果表明,QSI膜改性具有实现原位减少RO海水淡化膜生物结垢的潜力。

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