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Bacteria detection in drinking water and biofilm samples of an experimental distribution networks

机译:饮用水中的细菌检测和实验分配网络的生物膜样本

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In order to study the bacteria status in bulk water and biofilm and better understand the mechanism of second pollution in distribution networks, a pilot distribution networks was built. Different methods, such as heterotrophic plate counts (HPC), acidine orange direct count (AODC), direct viable counts-nalidixic acid (DVC-N.A.) and direct viable counts-5-cyano-2, 3-ditolyl tetrazolium chloride (DVC-CTC) were compared to get a practicable method to detect bacteria in drinking water. Growth status of biofilm on pipe wall was observed by electron microscope. API was used to identify representative bacteria in bulk water and biofilm samples. The results showed that direct viable counts method, such as DVC-N.A. and DVC-CTC could reflect the real state of bacteria in drinking water, and is more suitable for numerating viable bacteria in drinking water. Most bacterium in drinking water and biofilms samples identified by API are conditioned pathogens.
机译:为了研究散装水和生物膜的细菌状态,更好地了解分销网络中第二污染的机制,建立了试点分配网络。不同的方法,如异养板计数(HPC),酸橙直接计数(AODC),直接活计数 - 萘啶酸(DVC-NA)和直接活计数-5-氰基-2,3-二丙基四唑氯(DVC-比较CTC)以获得可行方法检测饮用水中细菌的方法。通过电子显微镜观察到粘液壁上生物膜的生长状态。 API用于鉴定散装水和生物膜样品中的代表性细菌。结果表明,直接可行的计数方法,如DVC-N.A。和DVC-CTC可以反映饮用水中的细菌的真实状态,更适合在饮用水中兼职的可行细菌。饮用水中的大多数细菌和API鉴定的生物膜样品是条件的病原体。

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