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RAPID POLYMER IDENTIFICATION BY IN-SOURCE DIRECT PYROLYSIS MASS SPECTROMETRY AND LIBRARY SEARCHING TECHNIQUES

机译:通过源内直接热裂解质谱和图书馆检索技术快速鉴定聚合物

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摘要

In-source direct pyrolysis mass spectrometry is studied for rapid identification of polymers in industrial products. In this technique, polymers are pyrolyzed within the ion source of a mass spectrometer by a coiled filament designed for desorption chemical ionization/desorption electron ionization applications. Pyrolysis products are ionized by 70 eV electron impact, yielding highly reproducible mass spectra characteristic of the polymer composition. Using this technique and a commercial library editor, a comprehensive mass spectral library containing more than 150 polymer entries was developed. The impacts of experimental and polymer variables on the reproducibility of polymer mass spectra were evaluated, The technique was successfully applied to the analysis of polymers in industrial products, showing advantages of short analysis time, high confidence level, and low matrix interference, This study suggests that a robust standard polymer library, independent of laboratory and mass spectrometer type, may be developed. However, more rigorous interlaboratory tests are needed to achieve this goal.
机译:为了直接鉴定工业产品中的聚合物,研究了直接源热解质谱法。在该技术中,聚合物通过设计用于解吸化学电离/解吸电子电离应用的卷曲丝在质谱仪的离子源内热解。热解产物在70 eV电子冲击下被电离,产生了聚合物组合物的高度可再现的质谱特征。使用此技术和商业库编辑器,开发了包含150个以上聚合物条目的综合质谱库。评估了实验变量和聚合物变量对聚合物质谱图重现性的影响,该技术已成功应用于工业产品中的聚合物分析,具有分析时间短,置信度高和基质干扰低的优点,这项研究表明可以开发出可靠的标准聚合物库,而与实验室和质谱仪类型无关。但是,需要更严格的实验室间测试才能实现此目标。

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