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Evaluation of a novel automated water analyzer for continuous monitoring of toxicity and chemical parameters in municipal water supply

机译:评估新型自动水分析仪以连续监测市政供水中的毒性和化学参数

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A novel tool, the DAMTA analyzer (Device for Analytical Monitoring and Toxicity Assessment), designed for fully automated toxicity measurements based on luminescent bacteria as well as for concomitant determination of chemical parameters, was developed and field-tested. The instrument is a robotic water analyzer equipped with a luminometer and a spectrophotometer, integrated on a thermostated reaction plate which contains a movable carousel with 80 cuvettes. Acute toxicity is measured on-line using a wild type Photobacterium phosphoreum strain with measurable bioluminescence and unaltered sensitivity to toxicants lasting up to ten days. The EC50 values of reference compounds tested were consistent with A. fischeri and P. phosphoreum international standards and comparable to previously published data. Concurrently, a laboratory trial demonstrated the feasibility of use of the analyzer for the determination of nutrients and metals in parallel to the toxicity measurements. In a prolonged test, the system was installed only in toxicity mode at the premises of the World Fair "Expo Milano-2015", a high security site to ensure the quality of the supplied drinking water. The monitoring program lasted for six months during which ca. 2400 toxicity tests were carried out; the results indicated a mean non-toxic outcome of -5.5 +/- 6.2%. In order to warrant the system's robustness in detecting toxic substances, Zn was measured daily with highly reproducible inhibition results, 70.8 +/- 13.6%. These results assure that this novel toxicity monitor can be used as an early warning system for protection of drinking water sources from emergencies involving low probability/high impact contamination events in source water or treated water.
机译:开发并现场测试了一种新颖的工具DAMTA分析仪(用于分析监测和毒性评估的设备),该工具用于基于发光细菌的全自动毒性测量以及化学参数的确定。该仪器是配备了发光计和分光光度计的机器人水分析仪,集成在恒温反应板上,该反应板上装有带80个比色皿的可移动转盘。急性毒性是使用具有可测量的生物发光并且对长达十天的毒物没有改变的敏感性的野生型荧光细菌菌株在线测定的。测试的参考化合物的EC50值符合费氏曲霉和磷假单胞菌国际标准,并且与以前发布的数据相当。同时,一项实验室试验证明了与毒性测量同时使用分析仪测定营养物和金属的可行性。经过长期测试,该系统仅以毒性模式安装在“ Expo Milano-2015”世博会的场所,这是一个高度安全的场所,可确保所提供饮用水的质量。监控程序持续了六个月,在此期间,进行了2400次毒性测试;结果表明平均无毒结果为-5.5 +/- 6.2%。为了保证系统在检测有毒物质方面的鲁棒性,每天都要对Zn进行测量,其抑制结果具有高度可重复性,为70.8 +/- 13.6%。这些结果确保了这种新颖的毒性监测器可以用作预警系统,以保护饮用水源免受涉及源水或处理后水中低概率/高影响污染事件的紧急情况。

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