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Automated concentration and recovery of micro-organisms from drinking water using dead-end ultrafiltration.

机译:使用死角超滤自动从饮用水中浓缩和回收微生物。

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Aims: Concentration of pathogens diluted in large volumes of water is necessary for their detection. An automated concentration system placed online in drinking water distribution systems would facilitate detection and mitigate the risk to public health. Methods and Results: A prototype concentrator based on dead-end hollow fibre ultrafiltration was used to concentrate Bacillus atrophaeus spores directly from tap water. Backflush was used to recover accumulated particulates for analysis. In field tests conducted on a water utility distribution system, 3.2.104-1.4.106 CFU ml-1 (6.1.106-3.0.108 CFU) were recovered from the filter when 2.9.107-1.0.109 CFU were spiked into the system. Per cent recovery ranged from 21% to 68% for flow volumes of 15-21 l. Tests using spore influent levels <10 CFU l-1 (spike <1000 CFU) yielded 23-40% recovery for volumes >100 l. Conclusions: B. atrophaeus spores at levels <10 CFU l-1 were concentrated directly from tap water using an automated dead-end hollow-fibre ultrafiltration system. Significance and Impact of the Study: The prototype concentrator represents a critical step towards an autonomous system that could be installed in drinking water distribution lines or other critical water lines to facilitate monitoring. Recovered samples can be analysed using standard or rapid biosensor methods.
机译:目的:浓缩大量水中稀释的病原体对于检测它们是必要的。在线安装在饮用水分配系统中的自动浓缩系统将有助于检测并减轻对公共健康的风险。方法和结果:使用基于空心中空纤维超滤的原型浓缩器直接从自来水中浓缩萎缩芽孢杆菌的孢子。反吹用于回收累积的颗粒以进行分析。在自来水分配系统上进行的现场测试中,当将2.9.107-1.0.109 CFU加标到过滤器中时,从过滤器中回收到3.2.104-1.4.106 CFU ml-1(6.1.106-3.0.108 CFU)。系统。对于15-21升的流量,回收率从21%到68%不等。使用<10 CFU l-1的孢子进水水平(穗<1000 CFU)进行的测试在体积> 100 l时回收率达到23-40%。结论:使用自动死角中空纤维超滤系统,可将自来水中浓度<10 CFU l-1的萎缩芽孢杆菌孢子直接浓缩。研究的意义和影响:原型集中器代表了朝着自治系统迈出的关键一步,该系统可以安装在饮用水分配管线或其他关键供水管线中以方便监控。回收的样品可以使用标准或快速生物传感器方法进行分析。

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