Bundesanstalt für Materialforschung und -prüfung (BAM), Unter den Eichen 87, 12205 Berlin, Germany.
Bundesanstalt für Materialforschung und -prüfung (BAM), Unter den Eichen 87, 12205 Berlin, Germany.
J Chromatogr A. 2019 May 10;1592:133-142. doi: 10.1016/j.chroma.2019.01.033. Epub 2019 Jan 11.
The TED-GC-MS analysis is a two-step method. A sample is first decomposed in a thermogravimetric analyzer (TGA) and the gaseous decomposition products are then trapped on a solid-phase adsorber. Subsequently, the solid-phase adsorber is analyzed with thermal desorption gas chromatography mass spectrometry (TDU-GC-MS). This method is ideally suited for the analysis of polymers and their degradation processes. Here, a new entirely automated system is introduced which enables high sample throughput and reproducible automated fractioned collection of decomposition products. The fractionated collection together with low temperatures reduces the risk of contamination, improves instrumental stability and minimizes maintenance efforts. Through variation of the two main parameters (purge gas flow and heating rate) it is shown how the extraction process can be optimized. By measuring the decomposition products of polyethylene it is demonstrated that compounds with masses of up to 434 Da can be detected. This is achieved despite the low temperature (˜40 °C) of the solid-phase adsorber and the low thermal desorption temperature of 200 °C in the TDU unit. It is now shown that automated TED-GC-MS represents a new flexible multi-functional method for comprehensive polymer analyses. Comparable polymer characterization was previously only achievable through a combination of multiple independent analytical methods. This is demonstrated by three examples focused on practical challenges in materials analysis and identification: The first one is the analysis of wood plastic composites for which the decomposition processes of the polymer and the bio polymer (wood) could be clearly distinguished by fractionated collection using sequential adsorbers. Secondly, a fast quantitative application is shown by determining the weight concentrations of an unknown polyolefin blend through comparison with a reference material. Additionally, the determination of microplastic concentrations in environmental samples is becoming an increasingly important analytical necessity. It is demonstrated that with TED-GC-MS calibration curves showing good linearity for the most important precursors for microplastic, even complex matrix materials (suspended particulate matter) can be successfully analyzed.
TED-GC-MS 分析是一种两步法。首先,将样品在热重分析仪(TGA)中分解,然后将气态分解产物捕集在固相吸附剂上。随后,使用热脱附气相色谱质谱联用仪(TDU-GC-MS)对固相吸附剂进行分析。该方法非常适合分析聚合物及其降解过程。这里介绍了一种全新的全自动系统,可实现高通量样品分析和可重复的自动分段收集分解产物。分段收集和低温降低了污染风险,提高了仪器稳定性并最大限度地减少了维护工作量。通过改变两个主要参数(吹扫气流和加热速率),展示了如何优化提取过程。通过测量聚乙烯的分解产物,证明可以检测到质量高达 434 Da 的化合物。尽管固相吸附剂的温度较低(约 40°C)且 TDU 单元的热脱附温度仅为 200°C,但仍能达到这一结果。现在表明,自动化 TED-GC-MS 代表了一种新的灵活多功能综合聚合物分析方法。以前,只有通过多种独立分析方法的组合才能实现类似的聚合物特性分析。通过三个聚焦于材料分析和鉴定实际挑战的示例来证明这一点:第一个示例是对木塑复合材料的分析,通过使用顺序吸附剂进行分段收集,可以清楚地区分聚合物和生物聚合物(木材)的分解过程。其次,通过与参考材料比较,通过快速定量应用来确定未知聚烯烃共混物的重量浓度。此外,环境样品中微塑料浓度的测定正成为日益重要的分析需求。结果表明,通过 TED-GC-MS 校准曲线对微塑料最重要的前体表现出良好的线性关系,即使是复杂的基质材料(悬浮颗粒物)也可以成功分析。