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用于与食品接触的聚苯乙烯材料中挥发性有机化合物的测定:顶空-气相色谱/质谱联用和固相微萃取-气相色谱/质谱联用技术的比较

Determination of volatile organic compounds in materials from polystyrene intended for contact with food: comparison of HS-GS/MS and SPME-GC/MS techniques.

作者信息

Kubica Dominika, Kaczmarczyk Monika, Kaszuba Alicja

机构信息

COBRO – Packaging Research Institute, Warsaw, Poland

出版信息

Rocz Panstw Zakl Hig. 2018;69(3):235-242.

Abstract

BACKGROUND

Plastic materials intended for contact with food sometimes exhibit unfavorable organoleptic properties which is related to the presence of volatile organic compounds. These substances not only worsen organoleptic properties, but can be very harmful to humans health. For the sake of consumer safety, it is necessary to control such materials for the content of substances harmful to health, as well as the possibility of their migration to food. Therefore, there is a need to have an appropriate and verified analytical method that could be used in the routine analysis of volatile organic substances present in food contact materials.

OBJECTIVE

In this study, the possibilities of the application of HS-GC/MS and SPME-GC/MS analytical techniques for analyses of volatile organic compounds present in polystyrene food contact materials, demonstrating disadvantageous organoleptic properties were evaluated.

MATERIALS AND METHODS

On the basis of sensory tests four types of food contact materials (plastic dishes) were selected for the study. The analytical measurement was performed by HS-GC/MS and SPME-GC/MS techniques parallel.

RESULTS

In quality examinations of samples the aliphatic and aromatic, saturated and unsaturated hydrocarbons, as well as other compounds, e.g. ketones contamination was estimated. For all the samples a quantitative analysis of the content of styrene, ethylbenzene and cyclohexane was carried out. Additionally, the optimization of SPME analysis parameters was carried out. It was assumed that the optimal SPME extraction conditions for this purposes are: extraction time of 15 - 30 min, extraction temperature of 80°C, CAR/PDMS fibre.

CONCLUSIONS

The results of this study indicated that from two chosen analytical methods, definitely HS-GC/MS technique was more universal, as well as more comfortable and faster. Sometimes, however additional studies should be undertaken and then it is recommended to use the SPME-GC/MS technique optimized for our purposes.

摘要

背景

用于与食品接触的塑料材料有时会表现出不良的感官特性,这与挥发性有机化合物的存在有关。这些物质不仅会恶化感官特性,还可能对人体健康非常有害。为了消费者安全,有必要控制此类材料中有害健康物质的含量,以及它们迁移到食品中的可能性。因此,需要一种合适且经过验证的分析方法,可用于食品接触材料中挥发性有机物质的常规分析。

目的

在本研究中,评估了顶空-气相色谱/质谱联用(HS-GC/MS)和固相微萃取-气相色谱/质谱联用(SPME-GC/MS)分析技术用于分析具有不良感官特性的聚苯乙烯食品接触材料中挥发性有机化合物的可能性。

材料与方法

基于感官测试,选择了四种食品接触材料(塑料餐具)进行研究。分析测量通过HS-GC/MS和SPME-GC/MS技术并行进行。

结果

在样品的质量检测中,估计了脂肪族和芳香族、饱和和不饱和烃以及其他化合物(如酮类)的污染情况。对所有样品进行了苯乙烯、乙苯和环己烷含量的定量分析。此外,还对SPME分析参数进行了优化。假定为此目的的最佳SPME萃取条件为:萃取时间15 - 30分钟,萃取温度80°C,CAR/PDMS纤维。

结论

本研究结果表明,在两种选定的分析方法中,HS-GC/MS技术肯定更通用,也更便捷、快速。然而,有时应进行额外研究,此时建议使用针对我们的目的进行优化的SPME-GC/MS技术。

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