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Biofilm recruitment under nanofiltration conditions: the influence of resident biofilm structural parameters on planktonic cell invasion

机译:纳滤条件下生物膜募集:常驻生物膜结构参数对浮游细胞入侵的影响

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Summary It is now generally accepted that biofouling is inevitable in pressure‐driven membrane processes for water purification. A large number of published articles describe the development of novel membranes in an effort to address biofouling in such systems. It is reasonable to assume that such membranes, even those with antimicrobial properties, when applied in industrial‐scale systems will experience some degree of biofouling. In such a scenario, an understanding of the fate of planktonic cells, such as those entering with the feed water, has important implications with respect to contact killing particularly for membranes with antimicrobial properties. This study thus sought to investigate the fate of planktonic cells in a model nanofiltration biofouling system. Here, the interaction between auto‐fluorescent Pseudomonas putida planktonic cells and 7‐day‐old Pseudomonas fluorescens resident biofilms was studied under permeate flux conditions in a nanofiltration cross flow system. We demonstrate that biofilm cell recruitment during nanofiltration is affected by distinctive biofilm structural parameters such as biofilm depth.
机译:小结现在,人们普遍认为在压力驱动的膜纯化过程中不可避免地会发生生物污染。大量已发表的文章描述了新型膜的开发,以解决此类系统中的生物污染问题。可以合理地假设,即使在工业规模的系统中使用此类膜,甚至具有抗菌特性的膜,也会受到一定程度的生物污染。在这种情况下,对浮游细胞(例如与给水一起进入的那些)的命运的了解,对于接触杀灭特别是对于具有抗菌特性的膜而言,具有重要意义。因此,本研究试图研究模型纳滤生物污染系统中浮游生物的命运。在纳滤交叉流系统中,在渗透通量条件下,研究了自发荧光恶臭假单胞菌浮游细胞与7天大的荧光假单胞菌驻留生物膜之间的相互作用。我们证明纳滤过程中生物膜细胞募集受到独特的生物膜结构参数如生物膜深度的影响。

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