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Real-Time Analysis of Isoprene in Breath by Using Ultraviolet-Absorption Spectroscopy with a Hollow Optical Fiber Gas Cell

机译:中空光纤气室的紫外吸收光谱实时分析呼吸中的异戊二烯

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A breath analysis system based on ultraviolet-absorption spectroscopy was developed by using a hollow optical fiber as a gas cell for real-time monitoring of isoprene in breath. The hollow optical fiber functions as an ultra-small-volume gas cell with a long path. The measurement sensitivity of the system was evaluated by using nitric-oxide gas as a gas sample. The evaluation result showed that the developed system, using a laser-driven, high-intensity light source and a 3-m-long, aluminum-coated hollow optical fiber, could successfully measure nitric-oxide gas with a 50 ppb concentration. An absorption spectrum of a breath sample in the wavelength region of around 200–300 nm was measured, and the measured spectrum revealed the main absorbing components in breath as water vapor, isoprene, and ozone converted from oxygen by radiation of ultraviolet light. The concentration of isoprene in breath was estimated by multiple linear regression. The regression analysis results showed that the proposed analysis system enables real-time monitoring of isoprene during the exhaling of breath. Accordingly, it is suitable for measuring the circadian variation of isoprene.
机译:通过使用中空光纤作为气室来实时监测呼吸中的异戊二烯,开发了基于紫外线吸收光谱的呼吸分析系统。中空光纤用作路径长的超小体积的气室。通过使用一氧化氮气体作为气体样品来评估系统的测量灵敏度。评估结果表明,所开发的系统使用激光驱动的高强度光源和3 m长的镀铝空心光纤,可以成功地测量浓度为50 ppb的一氧化氮气体。测量了呼吸样本在200-300 nm波长范围内的吸收光谱,所测得的光谱揭示了呼吸中的主要吸收成分,如水蒸气,异戊二烯和通过紫外线辐射从氧气转化为臭氧的臭氧。通过多元线性回归估计呼吸中异戊二烯的浓度。回归分析结果表明,所提出的分析系统能够在呼气期间实时监测异戊二烯。因此,它适合于测量异戊二烯的昼夜变化。

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