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Combination of an on-line biomonitor using light emitting bacteria and a UV spectrophotometer probe for homeland security and drinking water safety

机译:使用发光细菌和紫外分光光度计探头与紫外分光光度计探头组合,用于国土安全和饮用水安全

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The interest in on-line water quality monitors has increased significantly in the last years, because of the need for rapid, reliable and continuous monitoring. This has resulted in the introduction of new monitors which can provide (near) real-time information on water quality. They can be used for continuous river water quality control as well as for drinking water protection against intentional contamination. Still no universal monitor is yet available which is able to protect against all kinds of threats. The combination of complementary systems into a single integrated monitoring platform would greatly enhance the applicability of real time monitoring devices. Such a combination should be found in the complementary information derived from a chemical analytical technique and from an effect monitor (biomonitor). Where a chemical analytical monitoring system identifies and quantifies specific water contaminants, biomonitoring gives an indication of the total quality, including the effects of unknown toxic substances. This combination was found in using the TOXcontrol, a biological toxicity monitor using luminescent bacteria, and the scan spectroyserTM, a submersible UV-VIS spectrophotometer probe, to evaluate drinking water safety. This combination allows for the verification of alarm signals from one instrument with the signal of the other, reducing false alarm rates. Experiments were performed in a laboratory setting and in a field test. It is concluded that the combination of the UV-VIS spectrophotometer and the toxicity biomonitor comprises a monitoring system with a high added value being capable of detecting a broad range of contaminants at low concentrations.
机译:由于需要快速,可靠和持续的监测,对过去几年对在线水质监测器的利益显着增加。这导致引入新显示器,可以提供(近)水质的实时信息。它们可用于连续河水水质控制,以及对故意污染的饮用水保护。尚未提供通用监视器,可以防止各种威胁。互补系统进入单一集成监控平台的组合将大大提高实时监控设备的适用性。应在衍生自化学分析技术和效果监测仪(生物监测器)中的互补信息中找到这种组合。在化学分析监测系统识别和量化特异性水污染物的情况下,生物监动剂呈现出总质量的指示,包括未知有毒物质的影响。在使用毒素组合,使用发光细菌的生物毒性监测器,以及潜水紫外 - 可见分光光度计探针的扫描光谱术,探讨该组合,用于评估饮用水安全性。该组合允许验证来自一个仪器的警报信号,其中信号的信号降低了误报率。实验在实验室设定和现场测试中进行。结论是,UV-Vis分光光度计和毒性生物调速器的组合包括具有高附加值的监测系统,该系统能够以低浓度检测宽范围的污染物。

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