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具有双气室的四量子级联激光光谱仪,用于同时分析主流和侧流香烟烟雾。

Quad quantum cascade laser spectrometer with dual gas cells for the simultaneous analysis of mainstream and sidestream cigarette smoke.

作者信息

Baren Randall E, Parrish Milton E, Shafer Kenneth H, Harward Charles N, Shi Quan, Nelson David D, McManus J Barry, Zahniser Mark S

机构信息

Philip Morris USA Research Center, P.O. Box 26583, Richmond, VA 23234, USA.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2004 Dec;60(14):3437-47. doi: 10.1016/j.saa.2003.11.048.

Abstract

A compact, fast response, infrared spectrometer using four pulsed quantum cascade (QC) lasers has been applied to the analysis of gases in mainstream (MS) and sidestream (SS) cigarette smoke. QC lasers have many advantages over the traditional lead-salt tunable diode lasers, including near room temperature operation with thermoelectric cooling and single mode operation with improved long-term stability. The new instrument uses two 36 m, 0.3 l multiple pass absorption gas cells to obtain a time response of 0.1s for the MS smoke system and 0.4s for the SS smoke system. The concentrations of ammonia, ethylene, nitric oxide, and carbon dioxide for three different reference cigarettes were measured simultaneously in MS and SS smoke. A data rate of 20Hz provides sufficient resolution to determine the concentration profiles during each 2s puff in the MS smoke. Concentration profiles before, during and after the puffs also have been observed for these smoke constituents in SS smoke. Also, simultaneous measurements of CO(2) from a non-dispersive infrared (NDIR) analyzer are obtained for both MS and SS smoke. In addition, during this work, nitrous oxide was detected in both the MS and SS smoke for all reference cigarettes studied.

摘要

一种使用四个脉冲量子级联(QC)激光器的紧凑型、快速响应红外光谱仪已应用于主流(MS)和侧流(SS)香烟烟雾中的气体分析。与传统的铅盐可调谐二极管激光器相比,QC激光器具有许多优点,包括通过热电冷却实现近室温运行以及通过改善长期稳定性实现单模运行。新仪器使用两个36米、0.3升的多程吸收气室,对于MS烟雾系统可获得0.1秒的时间响应,对于SS烟雾系统可获得0.4秒的时间响应。同时测量了三种不同参比香烟在MS和SS烟雾中氨、乙烯、一氧化氮和二氧化碳的浓度。20Hz的数据速率提供了足够的分辨率,以确定MS烟雾中每2秒抽吸期间的浓度分布。对于SS烟雾中的这些烟雾成分,也观察到了抽吸前、抽吸期间和抽吸后的浓度分布。此外,还同时获得了MS和SS烟雾中来自非色散红外(NDIR)分析仪的CO(2)测量值。此外,在这项工作中,在所研究的所有参比香烟的MS和SS烟雾中都检测到了一氧化二氮。

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