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Experiments and Physical Modeling of Ultraviolet-Enhanced Contamination from Pure Contaminants

机译:纯污染物紫外线增强污染的实验和物理建模

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摘要

This work aims at understanding the synergistic effects of external contamination and solar ultraviolet (UV). A test facility and a physical model of major phenomena involved in UV-enhanced contamination were developed in collaboration among ONERA, ESA/European Space Research and Technology Center, and Centre National d'Etudes Spatiales. Deposition of contaminant models (pure chemical compounds) was performed on two different microbalances simultaneously with and without UV exposure, followed by a reemission phase and physicochemical analyses. In parallel, a multilayer physical model was developed and used to model experimental data. It takes into account physical phenomena such as adsorption and desorption and chemical mechanisms such as the creation of chromophores and bonds. Different regimes were studied, either at low temperature, resulting in deposit increase even without UV, or at high temperature, where an equilibrium is reached in the absence of UV. The model proved its ability to reproduce both regimes. Its number of free parameters was small enough to prove its predictive character. This work also showed the importance of the generation of oligomers and the existence of UV-induced bond scissions.
机译:这项工作旨在了解外部污染和太阳紫外线(UV)的协同效应。在ONERA,ESA /欧洲空间研究和技术中心以及国家空间研究中心的合作下,开发了涉及紫外线增强污染的主要现象的测试设施和物理模型。在有和没有紫外线照射的情况下,在两种不同的微量天平上同时进行污染物模型(纯化合物)的沉积,然后进行释放阶段和理化分析。同时,开发了一个多层物理模型并将其用于对实验数据进行建模。它考虑了物理现象(例如吸附和解吸)和化学机理(例如生色团和键的形成)。研究了不同的状态,在低温下甚至在没有紫外线的情况下也会导致沉积物增加,或者在高温下(在没有紫外线的情况下达到平衡)会导致沉积增加。该模型证明了其能够重现两种制度的能力。它的自由参数数量很小,足以证明其预测特性。这项工作还表明了产生低聚物的重要性和存在紫外线诱导的键断裂。

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