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Plastics in Heritage Science: Analytical Pyrolysis Techniques Applied to Objects of Design

机译:传统科学中的塑料:应用于设计对象的分析热解技术

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摘要

The first synthetic polymers were introduced as constituents of everyday life, design objects, and artworks at the end of the 19th century. Since then, the history of design has been strictly connected with the 20th century evolution of plastic materials. Objects of design from the 20th century are today a precious part of the cultural heritage. They raise specific conservation issues due to the degradation processes affecting synthetic polymer-based plastics. Museums and collections dealing with the conservation of design objects and modern materials need to base their conservation strategies on compositional data that reveal the formulations of historical plastics and their decay processes. Specific and specifically optimized analytical tools are thus needed. We employed flash analytical pyrolysis coupled with gas chromatography and mass spectrometry (Py-GC/MS) and evolved gas analysis coupled with mass spectrometry (EGA-MS) to characterize “historic polymeric materials” (HIPOMS) and heritage plastics at the molecular level with high chemical detail. This approach complements non-invasive spectroscopic diagnosis whenever it fails to obtain significant or complete information on the nature and the state of preservation of the materials under study. We determined the composition of several 20th century design objects (1954–1994) from the Triennale Design Museum of Milan (Triennale Milano - Museo del Design Italiano), which for different morphological, chemical, or physical reasons were unsuitable for characterization by non-invasive spectroscopy. EGA-MS proved capable for the study of the different fractions constituting heterogeneous micro-samples and for gaining an insight into their degradation processes from the contextual interpretation of thermal and mass-spectrometric data.
机译:最早的合成聚合物在19世纪末被引入为日常生活,设计对象和艺术品的组成部分。从那时起,设计的历史就与20世纪塑料材料的发展紧密地联系在一起。今天,来自20世纪的设计对象已成为文化遗产的宝贵组成部分。由于降解过程会影响合成聚合物基塑料,因此它们提出了特殊的保护问题。涉及设计对象和现代材料保护的博物馆和馆藏,其保护策略必须基于成分数据,以揭示历史塑料的配方及其衰变过程。因此,需要特定和专门优化的分析工具。我们采用快速分析热解结合气相色谱和质谱(Py-GC / MS)以及演化气体分析结合质谱(EGA-MS)来在分子水平上表征“历史聚合物材料”(HIPOMS)和传统塑料。高化学细节。每当无法获得有关正在研究的材料的性质和保存状态的重要信息或完整信息时,该方法就会补充非侵入性光谱诊断。我们确定了米兰三年展设计博物馆(Triennale Milano-Museo del Design Italiano)的几个20世纪设计对象(1954-1994年)的组成,由于不同的形态,化学或物理原因,这些对象不适合非侵入式表征光谱学。经证明,EGA-MS能够研究组成异质微样品的不同馏分,并能够从热学和质谱数据的上下文解释中深入了解其降解过程。

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