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Comparison of different analytical methods for volatile and odour-active substances in polyolefins

机译:聚烯烃中挥发性和气味活性物质的不同分析方法的比较

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摘要

Emissions of volatiles of polymeric materials are an important parameter for materials characterisation, and gain more and more importance either by their odour activity or by other undesired behaviour. Currently, numerous methods are applied for the determination of volatiles, but all of them use gas chromatography (GC) with different detectors. The information gained by flame ionisation detection (FID) is the total emitted volatiles expressed as a sum value, but no further deeper information is provided. Additionally, due to different sample amounts, preparation, way of sampling and GC parameters, results cannot be compared to each other. Also, determination of single sum values by integrating the total area of volatiles is of little help for material development due to the lack of detailed information about chemical composition, and other methods have to be applied. Other compounds of interest such as odour-active ones turn up in only very small amounts and cannot be detected by these methods as an extensive analytical sample preparation is necessary. We compare results obtained by different sample preparation techniques used in industrial standards (VDA 277 and VDA278) to scientific alternatives such as Solid Phase Microextraction (SPME) coupled to GC with mass spectrometry (MS) and Simultaneous Distillation/Extraction SDE coupled to GC-MS to demonstrate capabilities and applicability of each method.
机译:聚合材料挥发物的排放是材料表征的重要参数,并且由于其气味活性或其他不良行为而变得越来越重要。当前,许多方法都用于测定挥发物,但是所有方法都使用带有不同检测器的气相色谱仪(GC)。通过火焰离子化检测(FID)获得的信息是以总值表示的总排放挥发物,但未提供更深的信息。此外,由于样品量,制备,采样方式和GC参数不同,因此无法将结果进行相互比较。而且,由于缺乏有关化学成分的详细信息,通过积分挥发物的总面积来确定单个总和值对材料开发几乎没有帮助,因此必须采用其他方法。其他感兴趣的化合物(例如,具有气味的化合物)仅以非常少量的形式出现,并且由于需要大量的分析样品制备而无法通过这些方法检测到。我们将通过工业标准(VDA 277和VDA278)中使用的不同样品制备技术与科学替代品(如固相微萃取(SPME)与质谱联用质谱(MS)和同时蒸馏/萃取SDE与GC-MS联用)进行科学比较演示每种方法的功能和适用性。

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