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Application of Microextraction Techniques Including SPME and MESI to the Thermal Degradation of Polymers: A Review

机译:微萃取技术在包括SPME和MESI的微萃取技术在聚合物的热降解中:综述

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摘要

Here, we discuss the newly developed micro and solventless sample preparation techniques SPME (Solid Phase Microextraction) and MESI (Membrane Extraction with a Sorbent Interface) as applied to the qualitative and quantitative analysis of thermal oxidative degradation products of polymers and their stabilizers. The coupling of these systems to analytical instruments is also described. Our comprehensive literature search revealed that there is no previously published review article on this topic. It is shown that these extraction techniques are valuable sample preparation tools for identifying complex series of degradation products in polymers. In general, the number of products identified by traditional headspace (HS-GC-MS) is much lower than with SPME-GC-MS. MESI is particularly well suited for the detection of non-polar compounds, therefore number of products identified by this technique is not also to the same degree of SPME. Its main advantage, however, is its ability of (semi-) continuous monitoring, but it is more expensive and not yet commercialized.
机译:在这里,我们讨论新开发的微型和无溶剂样品制备技术SPME(固相微萃取)和MES​​I(用吸附剂界面萃取),其应用于聚合物及其稳定剂的热氧化降解产物的定性和定量分析。还描述了这些系统对分析仪器的耦合。我们全面的文学搜索显示,此前没有出版的审查文章。结果表明,这些提取技术是用于鉴定聚合物中的复杂系列降解产物的有价值的样品制备工具。通常,由传统顶部空间(HS-GC-MS)识别的产品数量远低于SPME-GC-MS。 MESI特别适合于检测非极性化合物,因此通过该技术鉴定的产物数量不具有相同程度的SPME。然而,其主要优势是其(半)连续监测的能力,但它更昂贵,尚未商业化。

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