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Investigation of biocide efficacy by photoacoustic biofilm monitoring

机译:通过光声生物膜监测研究杀菌剂的功效

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The undesired growth of biofilms on solid surfaces is often termed biofouling. Biofilms consist mainly of water and microbial cells which are embedded in a biopolymer matrix. Biofouling lowers the water quality and increases the frictional resistance in tubes. Further, biofilms increase the pressure differences in membrane processes and can clog filtration membranes, valves, and nozzles. For investigation and improvement of biocide efficacy and anti-fouling strategies, on-line and in situ monitoring of the biofilm is necessary. In this study, photoacoustic spectroscopy (PAS) was employed for biofilm monitoring. PAS allows the depth-resolved investigation of growth and detachment processes of biofilms. Strategies based on the oxidant hydrogen peroxide were compared to popular isothiazolinone biocides. Hydrogen peroxide allowed a very fast and efficient removal of attached biofilms, whereas no effect on the biofilm matrix was observed in most cases when isothiazolinone biocides were used.
机译:固体表面上不希望的生物膜生长通常被称为生物污染。生物膜主要由嵌入生物聚合物基质中的水和微生物细胞组成。生物污损降低水质并增加管内的摩擦阻力。此外,生物膜会增加膜工艺中的压力差,并会堵塞过滤膜,阀门和喷嘴。为了研究和改进杀生物剂的功效和防污策略,必须对生物膜进行在线和原位监测。在这项研究中,光声光谱法(PAS)用于生物膜监测。 PAS允许深度解析研究生物膜的生长和脱离过程。将基于氧化剂过氧化氢的策略与流行的异噻唑啉酮杀生物剂进行了比较。过氧化氢可以非常快速有效地去除附着的生物膜,而在大多数情况下,使用异噻唑啉酮生物杀灭剂对生物膜基质没有影响。

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