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Inhibition of biofilm formation on FO membrane surface by plant-oriented organic molecules

机译:植物定向有机分子抑制FO膜表面生物膜形成

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Quorum sensing inhibition (QSI) has been suggested as a potential solution to suppress the growth of biofilm on solid surfaces using pure enzymes or enzyme producing. In this study, three plant-oriented organic molecules (cinnamaldehyde, CIN; vanillin, VAN; zingerone, ZIN) were applied as QSIs in forward osmosis (FO) membrane system using Pseudomonas aeruginosa PAO1 as a model biofoulant. After 36 h of FO operation, all tested experiments with QSIs exhibited the retarded flux decline, and resulted in the increase in accumulated permeate volume by 5% (CIN), 21% (VAN), and 15% (ZIN) compared with that of control. It was due to the difference in the characteristics of biofilm formed on the membrane surface, that the biomass on the unit area of membrane surface with QSIs was decreased by 68%, 41%, and 15% in the presence of CIN, VAN, and ZIN, respectively. In the absence of QSIs, membrane surface turned more hydrophobic, which hindered the transport of permeate water due to the formation of hydrophobic biofilm, while those in the presence of QSIs possessed similar contact angle compared with that of the virgin membrane. Furthermore, the amount of extracellular polymeric substances per unit area of membrane was reduced significantly in the presence of QSIs. In conclusion, the addition of QSIs can be the economically feasible strategy to mitigate biofouling not only reducing the amount of biofilm on the membrane surface but also modifying properties of biofilm.
机译:已经提出群体感应抑制(QSI)作为使用纯酶或酶生产抑制固体表面生物膜生长的潜在解决方案。在这项研究中,使用铜绿假单胞菌PAO1作为模型生物污垢剂,将三种面向植物的有机分子(肉桂醛,CIN;香兰素,VAN;姜油酮,ZIN)用作正向渗透(FO)膜系统的QSI。在FO操作36小时后,所有QSI的测试实验均显示出滞后的通量下降,与之相比,所有渗透物体积增加了5%(CIN),21%(VAN)和15%(ZIN)。控制。由于在膜表面形成的生物膜的特性不同,在存在CIN,VAN和CIN的情况下,具有QSI的膜表面单位面积的生物量分别减少了68%,41%和15%。 ZIN分别。在没有QSI的情况下,膜表面变得更疏水,由于形成了疏水性生物膜而阻止了渗透水的运输,而在存在QSI的情况下,与原始膜相比,它们具有相似的接触角。此外,在存在QSI的情况下,每单位膜面积的细胞外聚合物质的量显着减少。总之,添加QSI可能是减轻生物污染的经济可行策略,不仅减少了膜表面上生物膜的数量,而且还改变了生物膜的性能。

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