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Study on the Elemental Mercury Absorption Cross Section Based on Differential Optical Absorption Spectroscopy

机译:基于差示吸收光谱法的元素汞吸收截面研究

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With the method of ultraviolet absorption spectrum, the exact absorption cross-section with the light source of the low-pressure mercury lamp was determined, during which the optimum wavelength for mercury concentrations inversion was 253.69 nm, the highest detection limit was 0.177 μg/cm~3, and the lowest detection limit was0.034 μg/cm~3. Furthermore, based on the differential optical absorption spectroscopy(DOAS), the relationship between the integral parameters (IP )and the concentration as well as the signal-noise ration (SNR) under the conditions of gas flow was determined and the lowest detection limit was figured out to be 0.03524 μg/cm~3, providing a method of DOAS to de-noise through the comparison between the mercury concentration values produced by DOAS and that produced by the wavelet de-noising method (db5). It turned out that the differential optical absorption spectroscopy had a strong anti-interference ability, while the wavelet de-noising method was not suitable for measuring the trace concentration change.
机译:用紫外吸收光谱法测定了低压汞灯光源的精确吸收截面,其间汞浓度反转的最佳波长为253.69 nm,最高检出限为0.177μg/ cm 〜3,最低检出限为0.034μg/ cm〜3。此外,基于差吸收光谱法(DOAS),确定了气体条件下积分参数(IP)与浓度之间的关系以及信噪比(SNR),并确定了最低检测限。得出的值为0.03524μg/ cm〜3,通过比较DOAS产生的汞浓度值和小波消噪方法产生的汞浓度值(db5),提供了一种DOAS消噪方法。事实证明,差分光学吸收光谱法具有很强的抗干扰能力,而小波消噪法不适合测量痕量浓度的变化。

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