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Comparison of electromagnetic wave sensors with optical and low-frequency spectroscopy methods for real-time monitoring of lead concentrations in mine water

机译:电磁波传感器与光学和低频光谱法的比较,用于实时监测矿井水中的铅浓度

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摘要

The feasibility of using novel electromagnetic wave sensors for real-time monitoring of metal pollution in water was assessed. Five solutions with different concentrations of lead (0, 1, 10, 50, 100 mg/L) were measured using several sensing methods: UV-Vis spectroscopy, low frequency capacitance and resistance measurements, and two sensing systems based on microwave technology. With this last approach, two sensing devices were used: a resonant cavity and a planar sensor with gold interdigitated electrode design printed on a PTFE substrate with a protective PCB lacquer coating. Results confirmed the ability of these systems to quantify the lead concentration as changes in spectrum signal at specific frequencies of the electromagnetic spectrum. Spectra were unique, with clearly observed shifts in the resonant frequencies of the sensors when placed in direct contact with different lead solutions, demonstrating the possibility of continuous monitoring with great sensitivity, selectivity, and high spatial and temporal resolution. Consequently, determination of trace and toxic metals using microwave spectroscopy is a promising alternative to traditional grab-sampling and laboratory based analyses. On-line and continuous monitoring of real-time metal concentrations offers the potential for a more effective emergency response and the platform for better scientific understanding and remediation of contaminated mine drainage.
机译:评估了使用新型电磁波传感器实时监测水中金属污染的可行性。使用几种传感方法测量了五种具有不同浓度铅(0、1、10、50、100 mg / L)的溶液:紫外可见光谱,低频电容和电阻测量以及两个基于微波技术的传感系统。在最后一种方法中,使用了两个传感设备:一个谐振腔和一个平面传感器,该传感器具有交错的金电极设计,印刷在带有保护性PCB漆涂层的PTFE基板上。结果证实了这些系统具有量化铅浓度的能力,这些铅浓度是在电磁频谱的特定频率处频谱信号的变化。光谱是独特的,当与不同的铅溶液直接接触时,可以清楚地观察到传感器共振频率的变化,从而证明了以高灵敏度,选择性以及高空间和时间分辨率进行连续监测的可能性。因此,使用微波光谱法测定痕量和有毒金属是传统的取样和实验室分析的有希望的替代方法。在线和连续监测实时金属浓度为更有效的应急响应提供了潜力,并为更好地科学理解和补救受污染的矿山排水提供了平台。

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