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A customised atmospheric pressure plasma jet for conservation requirements

机译:用于保护要求的定制大气压等离子体喷射

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In the last years atmospheric plasma has gained an increasing interest in the field of Cultural Heritage.Isolated experimentations that yet generated interesting results have drawn the attention of a wider community working on coating removal,oxide reduction and sterilization applications.Thanks to this growing multidisciplinary interest,the EU funded in 2011 the PANNA project,which includes the atmospheric plasma as a novel cleaning tool for cultural heritage.Plasma cleaning has some advantages compared to standard techniques because it avoids the use of solvents,it is contactless and differently from laser it works through a surface chemical action and not with mechanical shock or local heating.Moreover,atmospheric plasma has already shown good results in reducing mode for the conversion of corroded metal surface layers and in oxidation mode for biological cleaning and organic layer removal.In order to fulfil the Cultural Heritage requirements a novel plasma torch has been developed with a new design which allows to overcome the actual limits of commercial atmospheric plasma devices.The new device permits fast and effective treatments at temperatures lower than 50 °C,even at room temperature,without any electrode material deposition.These performances will be presented in relation to the removal of epoxy coatings and daguerreotype cleaning as examples.
机译:在过去几年中,大气等离子体在文化遗产领域获得了越来越兴趣的兴趣。发现了有趣的结果的发现实验已经引起了更广泛的社区涉及涂层去除,氧化物减少和灭菌应用。感谢这种日益增长的多学科利益,欧盟资助2011年的PANNA项目,包括大气等离子体作为文化遗产的新型清洁工具。与标准技术相比,本清洁有一些优势,因为它避免了溶剂的使用,它是非接触和不同的方式通过表面化学作用而不是机械冲击或局部加热。传道,大气等离子体已经显示出腐蚀金属表面层的转化模式以及用于生物清洁和有机层拆卸的氧化模式的良好结果。为了实现文化遗产要求开发了一种新型等离子火炬具有新的设计,允许克服商业大气等离子体器件的实际限制。新设备允许在低于50°C的温度下的快速有效的处理,即使在室温下,也没有任何电极材料沉积。这些性能将显示在与除去环氧涂层和Daguerreotype清洗的关系作为实施例。

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