首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Environmental formaldehyde analysis by active diffusive sampling with a bundle of polypropylene porous capillaries followed by capillary zone electrophoretic separation and contactless conductivity detection
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Environmental formaldehyde analysis by active diffusive sampling with a bundle of polypropylene porous capillaries followed by capillary zone electrophoretic separation and contactless conductivity detection

机译:通过一束聚丙烯多孔毛细管进行主动扩散采样,然后进行毛细管区带电泳分离和非接触电导检测,对环境甲醛进行分析

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摘要

Compared to other volatile carbonylic compounds present in outdoor air, formaldehyde (CH2O) is the most toxic, deserving more attention in terms of indoor and outdoor air quality legislation and control. The analytical determination of CH2O in air still presents challenges due to the low-level concentration (in the sub-ppb range) and its variation with sampling site and time. Of the many available analytical methods for carbonylic compounds, the most widespread one is the time consuming collection in cartridges impregnated with 2,4-dinitrophenylhydrazine followed by the analysis of the formed hydrazones by HPLC. The present work proposes the use of polypropylene hollow porous capillary fibers to achieve efficient CH2O collection. The Oxyphan (R) fiber (designed for blood oxygenation) was chosen for this purpose because it presents good mechanical resistance, high density of very fine pores and high ratio of collection area to volume of the acceptor fluid in the tube, all favorable for the development of air sampling apparatus. The collector device consists of a Teflon pipe inside of which a bundle of polypropylene microporous capillary membranes was introduced. While the acceptor passes at a low flow rate through the capillaries, the sampled air circulates around the fibers, impelled by a low flow membrane pump (of the type used for aquariums ventilation). The coupling of this sampling technique with the selective and quantitative determination of CH2O, in the form of hydroxymethanesulfonate (HMS) after derivatization with HSO3-, by capillary electrophoresis with capacitively coupled contactless conductivity detection (CE-(CD)-D-4) enabled the development of a complete analytical protocol for the CH2O evaluation in air. (C) 2008 Published by Elsevier B.V.
机译:与室外空气中存在的其他挥发性羰基化合物相比,甲醛(CH2O)毒性最高,在室内和室外空气质量法规和控制方面应引起更多关注。空气中CH2O的分析测定仍然存在挑战,这是由于其低浓度(在低于ppb范围内)以及其随采样位置和时间的变化而变化。在许多可用于羰基化合物的分析方法中,最广泛的一种方法是费时的收集,方法是在用2,4-二硝基苯肼浸渍的小柱中进行收集,然后通过HPLC分析所形成的。本工作提出使用聚丙烯中空多孔毛细管纤维来实现有效的CH2O收集。之所以选择Oxyphan(R)纤维(专为血液氧合而设计)是因为它具有良好的机械抵抗力,高密度的非常细的孔和高的收集面积与管内受体流体体积之比,这对空气采样仪的开发。收集器装置由铁氟龙管组成,在管内引入了一束聚丙烯微孔毛细管膜。当受体以低流速通过毛细管时,被采样的空气在纤维周围循环,这是由低流量隔膜泵(用于水族箱通风的类型)推动的。通过毛细管电泳和电容耦合非接触电导检测(CE-(CD)-D-4),可以使这种采样技术与HSO3-衍生化后以羟甲基磺酸盐(HMS)形式选择性和定量测定CH2O耦合开发用于空气中CH2O评估的完整分析方案。 (C)2008由Elsevier B.V.发布

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