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Optimization of Time-Weighted Average Air Sampling by Solid-Phase Microextraction Fibers Using Finite Element Analysis Software

机译:固相微萃取纤维使用有限元分析软件优化时间加权平均空气采样

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摘要

Determination of time-weighted average (TWA) concentrations of volatile organic compounds (VOCs) in air using solid-phase microextraction (SPME) is advantageous over other sampling techniques, but is often characterized by insufficient accuracies, particularly at longer sampling times. Experimental investigation of this issue and disclosing the origin of the problem is problematic and often not practically feasible due to high uncertainties. This research is aimed at developing the model of the TWA extraction process and optimization of TWA air sampling by SPME using finite element analysis software (COMSOL Multiphysics, Burlington, MA, USA). It was established that sampling by porous SPME coatings with high affinity to analytes is affected by slow diffusion of analytes inside the coating, an increase of their concentrations in the air near the fiber tip due to equilibration, and eventual lower sampling rate. The increase of a fiber retraction depth (Z) resulted in better recoveries. Sampling of studied VOCs using 23 ga Carboxen/polydimethylsiloxane (Car/PDMS) assembly at maximum possible Z (40 mm) was proven to provide more accurate results. Alternative sampling configuration based on 78.5 × 0.75 mm internal diameter SPME liner was proven to provide similar accuracy at improved detection limits. Its modification with the decreased internal diameter from the sampling side should provide even better recoveries. The results obtained can be used to develop a more accurate analytical method for determination of TWA concentrations of VOCs in air using SPME. The developed model can be used to simulate sampling of other environments (process gases, water) by retracted SPME fibers.
机译:使用固相微萃取(SPME)测定空气中挥发性有机化合物(VOC)的时间加权平均(TWA)浓度优于其他采样技术,但通常特点是准确性不足,尤其是在更长的采样时间下。由于存在很大的不确定性,对此问题进行实验研究并揭示问题的根源是有问题的,并且通常在实践中不可行。这项研究旨在开发TWA提取过程的模型,并使用有限元分析软件(COMSOL Multiphysics,美国马萨诸塞州伯灵顿)通过SPME优化TWA空气采样。已经确定,通过对分析物具有高亲和力的多孔SPME涂层进行采样,会受到以下影响:涂层内分析物的缓慢扩散,由于平衡而导致的其在纤维尖端附近空气中浓度的增加以及最终的较低采样率。纤维回缩深度(Z)的增加导致更好的回收率。事实证明,使用23 ga羧基/聚二甲基硅氧烷(Car / PDMS)组件以最大可能的Z(40 mm)取样研究的VOC可以提供更准确的结果。事实证明,基于78.5×0.75 mm内径SPME衬管的替代采样配置可在改善的检测极限下提供相似的精度。从采样侧减小内径对其进行的修改应提供更好的回收率。获得的结果可用于开发使用SPME测定空气中VOC的TWA浓度的更准确的分析方法。开发的模型可用于模拟缩回的SPME纤维对其他环境(工艺气体,水)的采样。

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