首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >The Potential Applications of Real-Time Monitoring of Water Quality in a Large Shallow Lake (Lake Taihu China) Using a Chromophoric Dissolved Organic Matter Fluorescence Sensor
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The Potential Applications of Real-Time Monitoring of Water Quality in a Large Shallow Lake (Lake Taihu China) Using a Chromophoric Dissolved Organic Matter Fluorescence Sensor

机译:利用发色溶解性有机物荧光传感器实时监测大型浅湖(太湖)水质的潜在应用

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摘要

This study presents results from field surveys performed over various seasons in a large, eutrophic, shallow lake (Lake Taihu, China) using an in situ chromophoric dissolved organic matter (CDOM) fluorescence sensor as a surrogate for other water quality parameters. These measurements identified highly significant empirical relationships between CDOM concentration measured using the in situ fluorescence sensor and CDOM absorption, fluorescence, dissolved organic carbon (DOC), chemical oxygen demand (COD) and total phosphorus (TP) concentrations. CDOM concentration expressed in quinine sulfate equivalent units, was highly correlated with the CDOM absorption coefficient (r2 = 0.80, p < 0.001), fluorescence intensities (Ex./Em. 370/460 nm) (r2 = 0.91, p < 0.001), the fluorescence index (r2 = 0.88, p < 0.001) and the humification index (r2 = 0.78, p < 0.001), suggesting that CDOM concentration measured using the in situ fluorescence sensor could act as a substitute for the CDOM absorption coefficient and fluorescence measured in the laboratory. Similarly, CDOM concentration was highly correlated with DOC concentration (r2 = 0.68, p < 0.001), indicating that in situ CDOM fluorescence sensor measurements could be a proxy for DOC concentration. In addition, significant positive correlations were found between laboratory CDOM absorption coefficients and COD (r2 = 0.83, p < 0.001), TP (r2 = 0.82, p < 0.001) concentrations, suggesting a potential further application for the real-time monitoring of water quality using an in situ CDOM fluorescence sensor.
机译:这项研究提供了在一个大型富营养化浅水湖泊(中国太湖)中不同季节进行的野外调查结果,该调查使用原位发色溶解性有机物(CDOM)荧光传感器作为其他水质参数的替代指标。这些测量结果确定了使用现场荧光传感器测得的CDOM浓度与CDOM吸收,荧光,溶解有机碳(DOC),化学需氧量(COD)和总磷(TP)浓度之间的高度显着的经验关系。 CDOM浓度以硫酸奎宁当量单位表示,与CDOM吸收系数(r 2 = 0.80,p <0.001),荧光强度(Ex./Em。370/460 nm)(r 2 = 0.91,p <0.001),荧光指数(r 2 = 0.88,p <0.001)和增湿指数(r 2 = 0.78,p <0.001),表明使用原位荧光传感器测得的CDOM浓度可以代替CDOM吸收系数和实验室测得的荧光。同样,CDOM浓度与DOC浓度高度相关(r 2 = 0.68,p <0.001),表明原位CDOM荧光传感器测量值可以代替DOC浓度。另外,实验室CDOM吸收系数与COD(r 2 = 0.83,p <0.001),TP( r 2 = 0.82, p <0.001)浓度,表明使用原位 CDOM荧光传感器实时监测水质的潜在应用。

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