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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Assessing bacterial growth potential in a model distribution system receiving nanofiltration membrane treated water
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Assessing bacterial growth potential in a model distribution system receiving nanofiltration membrane treated water

机译:在接受纳滤膜处理过的水的模型分配系统中评估细菌的生长潜力

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This study was designed to assess the extent of bacterial growth in a model distribution system fed with the water treated by nanofiltration (NF) membranes under controlled conditions. The three NF membranes were used in improving the quality of tap water in a lab-scale process. The changes in total cell counts and culturable heterotrophic bacteria in both bulk water and biofilm were monitored during transport of NF permeate water through the model distribution system. The NF membranes were capable of removing the assimilable organic carbon (AOC) contents, but not low enough to restrict bacterial growth. Bacterial adhesion and cellular proliferation were observed in the NF permeate-fed systems, which were apparently characterized by the increase in the fraction of culturable heterotrophic bacteria and the relative abundance of α-Proteobacteria in bacterial community of biofilms. The overall specific cell growth rate which indicates the growth potential in the whole system was calculated as 0.07-0.08 day~(-1). Results indicate that the NF permeate water has some potential to support bacterial growth in a distribution system, although the NF membrane is able to improve the quality of drinking water. Consequently, proper care should be taken to secure biostability to acceptable levels.
机译:这项研究旨在评估模型分配系统中细菌的生长程度,该模型分配系统中在受控条件下用纳滤(NF)膜处理过的水进行喂养。在实验室规模的过程中,使用了三种NF膜来提高自来水的质量。在通过模型分配系统运送NF渗透水的过程中,监测了散装水和生物膜中总细胞数和可培养的异养细菌的变化。 NF膜能够去除可吸收的有机碳(AOC)含量,但含量不足以限制细菌生长。在通过NF渗透物​​喂养的系统中观察到细菌粘附和细胞增殖,其明显特征在于可培养的异养细菌的比例增加以及生物膜细菌群落中α-变形杆菌的相对丰度。计算表明整个系统的生长潜力的总体比细胞生长速率为0.07-0.08天〜(-1)。结果表明,尽管NF膜能够改善饮用水的质量,但NF渗透水具有一定的潜力来支持细菌在分配系统中的生长。因此,应采取适当的措施以确保生物稳定性达到可接受的水平。

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