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Evaluation of disinfectant efficacy against biofilm and suspended bacteria in a laboratory swimming pool model

机译:在实验室游泳池模型中评估针对生物膜和悬浮细菌的消毒功效

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Laboratory reactor systems designed to model specific environments enable researchers to explore environmental dynamics in a more controlled manner. This paper describes the design and operation of a reactor system built to model a swimming pool in the laboratory. The model included relevant engineering parameters such as filter loading and turnovers per day. The water chemistry in the system's bulk water was balanced according to standard recommendations and the system was challenged with a bacterial load and synthetic bather insult, formulated to represent urine and perspiration. The laboratory model was then used to evaluate the efficacy of six chemical treatments against biofilm and planktonic bacteria. Results showed that the biofilm was able to accumulate on coupons and in the filter systems of reactors treated with either 1-3mg/L free chlorine or 10mg/L polyhexamethylene biguanide (PHMB). All the treatments tested resulted in at least a 4 log reduction in biofilm density when compared to the control, but shock treatments were the most effective at controlling biofilm accumulation. A once weekly shock dose of 10mg/L free chlorine resulted in the greatest log reduction in biofilm density. The research demonstrated the importance of studying a biofilm in addition to the planktonic bacteria to assess the microbial dynamics that exist in a swimming pool model.
机译:设计用于模拟特定环境的实验室反应器系统使研究人员能够以更可控的方式探索环境动态。本文介绍了用于模拟实验室游泳池的反应堆系统的设计和操作。该模型包括相关的工程参数,例如过滤器的装载量和每天的营业额。根据标准建议,平衡了系统散装水中的水化学成分,并且该系统受到细菌负荷和合成沐浴露攻击的挑战,配制为代表尿液和汗液。然后使用实验室模型评估六种化学处理对生物膜和浮游细菌的功效。结果表明,生物膜能够积聚在试样上以及用1-3mg / L游离氯或10mg / L聚六亚甲基双胍(PHMB)处理过的反应器的过滤器系统中。与对照相比,所有测试的处理均导致生物膜密度至少降低4 log,但是电击处理在控制生物膜积累方面最有效。每周一次的10mg / L游离氯冲击剂量导致最大的对数减少生物膜密度。该研究表明,除了浮游细菌外,研究生物膜以评估游泳池模型中存在的微生物动力学的重要性。

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