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Modular development of an inline monitoring system for waterborne pathogens in raw and drinking water

机译:模块化开发的原水和饮用水中水生病原体在线监测系统

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The state-of-the-art monitoring of drinking water hygiene is based on the cultivation and enumeration of indicator bacteria. Despite its proven reliability, this approach has the disadvantages of being (a) relatively slow and (b) limited to a small number of indicator bacteria. Ideally, alternative methods would be less time-consuming while providing information about a larger set of hygienically relevant microorganisms including viruses. In this paper, we present insights into the design of a modular concentration and detection system for bacteria, bacteriophages and viruses. Following further validation, this or similar techniques have the potential to extend and speed up the monitoring of raw and drinking water hygiene in the future. The system consists of different modules for the concentration of microorganisms, an amplification and detection unit that includes a module for the differentiation between live and dead microorganisms, and an automated system for decision support and self-diagnosis. The ongoing testing under controlled laboratory conditions and real-life conditions in the water supply industry yields further system improvements. Moreover, the increased sensitivity and broader range of microbiological parameters emphasize the need for a reconsideration of the currently used criteria for the assessment of (drinking) water hygiene.
机译:饮用水卫生的最新监控基于指示细菌的培养和枚举。尽管该方法具有可靠的可靠性,但其缺点是:(a)相对较慢,并且(b)限于少数指示细菌。理想地,替代方法将在提供有关包括病毒在内的一大批与卫生相关的微生物有关的信息时减少耗时。在本文中,我们提出了对细菌,噬菌体和病毒的模块化浓度和检测系统设计的见解。经过进一步验证,此技术或类似技术有可能在将来扩展并加快对生水和饮用水卫生的监控。该系统由用于浓缩微生物的不同模块,一个包含用于区分活微生物和死微生物的模块的扩增和检测单元以及一个用于决策支持和自我诊断的自动化系统组成。在供水行业中受控制的实验室条件和实际条件下进行的不断测试可进一步改善系统。此外,增加的敏感性和更广泛的微生物参数范围强调需要重新考虑当前使用的标准(饮用水)卫生评估。

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