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Fourier Transform Infrared Spectroscopy of Aqueous Solutions using Optical Subtraction

机译:使用光学减法的水溶液的傅立叶变换红外光谱

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For the analysis of small concentrations of organics in aqueous solutions, a novel add-on accessory for dual-beam / optical subtraction spectroscopy has been built for a commercial Fourier transform infrared spectrometer. A standard FT-IR instrument requires a sample measurement and a separate reference measurement, whereas the optical subtraction instrument directly measures the difference between sample and reference. This has a number of advantages. The time delay between the two measurements is eliminated, and the effective measurement time is improved by a factor of two. Moreover, the optical subtraction provides a large reduction in dynamic range of the measured signal, which prevents detector saturation, and enables effective use of dynamic range of the analog to digital converter in the FT-IR spectrometer. This results in an increased signal to noise ratio, compared to the standard FT-IR instrument. By changing detector and light source the instrument may be used for both near- and mid-infrared spectroscopy. The increased sensitivity and stability of the optical subtraction instrument compared to the standard instrument is demonstrated by transmission measurements of aqueous urea solutions in the combination band region 4000 to 5000cm~(-1) (2000 to 2500 nm).
机译:为了分析水溶液中的少量有机物,已经为商业傅立叶变换红外光谱仪构建了一种新型的双光束/光学减法光谱附件。标准FT-IR仪器需要样品测量和单独的参考测量,而光学减法仪直接测量样品和参考之间的差异。这具有许多优点。消除了两次测量之间的时间延迟,有效测量时间提高了两倍。此外,光学减法大大减小了被测信号的动态范围,从而防止了检测器饱和,并使FT-IR光谱仪能够有效利用模数转换器的动态范围。与标准的FT-IR仪器相比,这将提高信噪比。通过更换检测器和光源,该仪器可用于近红外光谱和中红外光谱。与标准仪器相比,光学减法仪器具有更高的灵敏度和稳定性,这是通过在4000至5000cm〜(-1)(2000至2500 nm)组合波段范围内的尿素水溶液的透射测量结果证明的。

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