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Elemental mercury sensing by synchronously sweeping two multimode diode lasers

机译:通过同步扫描两个多模二极管激光器来元素汞感测

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We propose a sum-frequency-generation (SFG) laser-based elemental mercury sensing method by mixing two low-cost multimode diode lasers (MDLs). The wavelengths of the two MDLs are synchronously scanned, which enlarges the whole coverage range of wavelength and improves the measurement stability. Correlation spectroscopy was used to eliminate the impact of environmental change and enhance and trace the absorption signal of the sample accurately. A novel data processing method was employed to extract the weak absorption signals from the background efficiently. A sensitivity of 0.1 mu g/m(3) (11 ppt) was achieved for 1-m path length and 10-s integration time. The sensing range was efficiently increased up to 200 mu g/m(3) using a calibration curve based on a new mathematical analytical formula. Real-time monitoring of the mercury volatilization and diffusion process was experimentally demonstrated with a time resolution of 10 s. The performance of the system shows great practical value for the detection of elemental mercury in industrial applications. (C) 2020 Optical Society of America
机译:我们通过混合两个低成本多模二极管激光器(MDL)提出了一种基于频率的基于频率的元素汞感测方法。两个MDL的波长是同步扫描的,这会扩大波长的整个覆盖范围并提高测量稳定性。相关光谱法用于消除环境变化的影响,并准确地增强样品的吸收信号。采用新型数据处理方法,以有效地从背景中提取弱吸收信号。实现0.1μg/ m(3)(11 ppt)的灵敏度,用于1 m的路径长度和10-s的整合时间。使用基于新的数学分析公式,使用校准曲线有效地增加到200μg/ m(3)的感测范围。通过10 s的时间分辨率实验证明了对汞挥发和扩散过程的实时监测。该系统的性能显示出在工业应用中的元素汞的检测方面的实用价值。 (c)2020美国光学学会

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    《Applied optics》 |2020年第11期|共9页
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  • 正文语种 eng
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