首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Airborne aldehydes in cabin-air of commercial aircraft: Measurement by HPLC with UV absorbance detection of 2,4-dinitrophenylhydrazones
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Airborne aldehydes in cabin-air of commercial aircraft: Measurement by HPLC with UV absorbance detection of 2,4-dinitrophenylhydrazones

机译:商用飞机机舱空气中的乙醛:通过HPLC测定并通过UV吸收检测2,4-二硝基苯hydr

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This paper presents the strategy and results of in-flight measurements of airborne aldehydes during normal operation and reported "smell events" on commercial aircraft. The aldehyde-measurement is a part of a large-scale study on cabin-air quality. The aims of this study were to describe cabin-air quality in general and to detect chemical abnormalities during the so-called "smell-events". Adsorption and derivatization of airborne aldehydes on 2,4-dinitrophenylhydrazine coated silica gel (DNPH-cartridge) was applied using tailor-made sampling kits. Samples were collected with battery supplied personal air sampling pumps during different flight phases. Furthermore, the influence of ozone was investigated by simultaneous sampling with and without ozone absorption unit (ozone converter) assembled to the DNPH-cartridges and found to be negligible. The method was validated for 14 aldehydes and found to be precise (RSD, 5.5-10.6%) and accurate (recovery, 98-103 %), with LOD levels being 0.3-0.6 mu g/m(3). According to occupational exposure limits (OEL) or indoor air guidelines no unusual or noticeable aldehyde pollution was observed. In total, 353 aldehyde samples were taken from two types of aircraft. Formaldehyde (overall average 5.7 mu g/m(3), overall median 4.9 mu g/m(3), range 0.4-44 mu g/m(3)), acetaldehyde (overall average 6.5 mu g/m(3), overall median 4.6, range 0.3-90 mu g/m(3)) and mostly very low concentrations of other aldehydes were measured on 108 flights. Simultaneous adsorption and derivatization of airborne aldehydes on DNPH-cartridges to the Schiff bases and their HPLC analysis with UV absorbance detection is a useful method to measure aldehydes in cabin-air of commercial aircraft. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍了在正常运行过程中对空中醛类进行空中测量的策略和结果,并报道了商用飞机上的“气味事件”。醛测量是对客舱空气质量进行大规模研究的一部分。这项研究的目的是描述一般的机舱空气质量,并在所谓的“气味事件”期间检测化学异常。使用量身定制的采样套件,对空气中的醛在2,4-二硝基苯肼涂层的硅胶(DNPH-墨盒)上的吸附和衍生化进行了研究。在不同的飞行阶段,使用电池供电的个人空气采样泵收集样品。此外,通过同时采样和不采样将臭氧吸收单元(臭氧转换器)组装到DNPH墨盒中来研究臭氧的影响,发现臭氧的影响可以忽略不计。该方法已针对14种醛进行了验证,发现准确(RSD,5.5-10.6%)和准确(回收​​率98-103%),LOD水平为0.3-0.6μg / m(3)。根据职业接触限值(OEL)或室内空气准则,未观察到异常或明显的醛污染。总共从两种飞机上采集了353个醛样品。甲醛(整体平均5.7μg / m(3),整体中位数4.9μg / m(3),范围0.4-44μg / m(3)),乙醛(整体平均6.5μg / m(3),在108次飞行中测得的总中位数为4.6,范围在0.3-90μg / m(3)之间,并且大多数其他醛的浓度非常低。 DNPH墨盒上的空气中醛同时吸附和衍生化到Schiff碱上,并通过紫外吸收检测进行HPLC分析,这是一种测量商用飞机机舱中醛的有用方法。 (C)2015 Elsevier B.V.保留所有权利。

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