基于多模二極管激光的汞氣監(jiān)測(cè)技術(shù)研究
[Abstract]:Mercury is a toxic heavy metal element, if excessive emissions, not only will have a significant impact on industrial and agricultural production, but also threaten the health of people. Mercury pollution is serious in our country, and some years ago, some provisions have been issued to control mercury emissions, so it is becoming more and more important to monitor mercury effectively, especially gaseous mercury. In recent years, with the development of optoelectronic technology, many chemical monitoring methods have been replaced by simple, efficient and low-cost optical monitoring methods. In optical monitoring technology, spectroscopic monitoring methods have become the mainstream direction. This paper focuses on elemental mercury, including gaseous mercury in atmospheric and factory exhaust gases. Monitoring of gaseous mercury not only contributes to the improvement of mercury removal efficiency, but also plays an important role in monitoring and improving environmental pollution. This paper presents a method of generating ultraviolet laser with center wavelength of 253.7 nm using tunable multimode diode laser frequency doubling and sum-frequency technology, combined with correlation spectroscopy. The mercury concentration in the sample chamber is obtained by the automatic peak detection and generalized linear fitting algorithm, and the continuous monitoring of mercury can be realized. The absorption line of mercury is very narrow and has a strong absorption at 253.7 nm wavelength. In the frequency doubling experiment, the center wavelength of tunable multimode green diode laser is 505 nm.. The wavelength can be adjusted to 507.3 nm, under the control of current and temperature, and the wavelength can be adjusted to 507.3 nm, under the condition of adding external cavity. 253.7 nm ultraviolet light can be obtained from the frequency doubling effect of BBO crystal. The calculated results show that the UV intensity is 16.6 nW, and the sensitivity of mercury concentration measurement is 0.07 渭 g / m ~ (-3) at 1 m path / 4 s integral time, and the linear dynamic range of mercury concentration measurement is about 0 ~ 45 渭 g / m ~ (-3). Finally, the gas selectivity and practicability of the system were tested and the mercury concentration was continuously monitored. In sum-frequency experiments, tunable multi-mode red diode lasers with central wavelength of 687 nm and tunable multi-mode blue diode lasers with central wavelength of 401 nm are used to obtain 253.7 nm ultraviolet light through sum-frequency effect generated by BBO crystal. Scanning signals are applied to red and blue lasers, respectively, and double-channel scanning is carried out. The calculated results show that the sensitivity of mercury concentration measurement is 0.13 渭 g / m ~ (-3) at 1 m path / 10 s integral time when the UV intensity is 1.0 nW,. The linear dynamic range of mercury concentration measurement is about 0 ~ 36 渭 g / m ~ (3), and the analytical formulas of linear range and nonlinear range are given. By changing the temperature of the two lasers, we evaluate the stability of the system and complete the continuous monitoring of the volatilization and diffusion of mercury.
【學(xué)位授予單位】:哈爾濱工業(yè)大學(xué)
【學(xué)位級(jí)別】:碩士
【學(xué)位授予年份】:2017
【分類(lèi)號(hào)】:TN249;TN23
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