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Ultraviolet Interferometric Spectroscopy for Real-time Detection of Elemental Mercury

机译:紫外线干涉谱,用于实时检测元素汞

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Mercury emissions from industrial stacks pose a hazardous threat to human being. Conventional methods of atomic absorption and plasma emission spectroscopy have their limitations. In order to develop a sensitive real-time measurement approach for industrial applications, an ultraviolet interferometer system capable of Fourier transform spectrochemical measurements has been preliminary studied in our laboratory. though interferometry approach is mostly used in infrared, the interferometer we developed has showed its great potential for application in atomic emission detection in ultraviolet. We have set up the interferometer in Michelson configuration. Light source of our choice is low pressure mercury pen lamp charge-coupled-device (CCD) camera. Moving fringes was generated by linear displacement of the movable mirror of the Michelson interferometer. The interferograms at both ultraviolet and visible regions of atomic mercury emission spectrum were recorded. Based on the translation function of movable mirror, wavelength information is retrieved from the interferogram. The error of experimental resolved wavelength is within 2
机译:工业堆栈的汞排放对人类的危险威胁构成了危险的威胁。常规原子吸收和血浆发射光谱方法具有它们的局限性。为了开发用于工业应用的敏感实时测量方法,在我们的实验室中已经初步研究了能够进行傅里叶变换谱系测量的紫外线干涉仪系统。虽然干涉测量方法主要用于红外线,但我们开发的干涉仪表现出其在紫外线中原子发射检测中的应用潜力。我们在Michelson配置中设置了干涉仪。我们选择的光源是低压汞笔灯电荷耦合​​装置(CCD)相机。通过迈克森干涉仪的可动镜子的线性位移产生移动条纹。记录了原子汞发射光谱的紫外线和可见区域的干扰图。基于可移动镜的翻译功能,从干扰图检索波长信息。实验分辨波长的错误在2中

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