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Numerical simulation of a microwave driven low pressure plasma for pet bottle treatment

机译:微波驱动低压等离子体对宠物瓶进行处理的数值模拟

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Due to a growing demand for bottles made of polyethylene terephthalate (PET) fast and efficient sterilization processes as well as barrier coating to decrease gas permeation are required. Plasma sterilization is an alternative way of sterilizing PET without using toxic ingredients (e.g. hydrogen peroxide or peracetic acid). To allow investigations in the field of plasma sterilization of PET bottles, a microwave plasma reactor has been developed. A coaxial waveguide combined with a gas-inlet, a modified plasmaline, is used for both coupling the microwave power and injecting the gas mixture into the bottle. One key parameter in the context of plasma treatment of bottles is the ion energy distribution function (IEDF) at the inner surface of the bottle. Numerical results for IEDFs performed by means of the Hybrid Plasma Equipment Model (HPEM) are presented. Plasmas with relevant gas mixtures (Ar, ArH2 and ArO2) at different pressures and input powers are examined. The numerical results are compared with experimentally obtained data.
机译:由于对由聚对苯二甲酸乙二酯(PET)制成的瓶子的需求不断增长,因此需要快速有效的灭菌工艺以及用于减少气体渗透的阻隔涂层。等离子灭菌是不使用有毒成分(例如过氧化氢或过氧乙酸)对PET进行灭菌的另一种方法。为了允许对PET瓶的等离子体灭菌领域的研究,已经开发了微波等离子体反应器。将同轴波导与进气口(改进的等离子线)结合使用,既可以耦合微波功率,又可以将气体混合物注入瓶中。在瓶子的等离子体处理中,一个关键参数是瓶子内表面的离子能量分布函数(IEDF)。给出了通过混合等离子体设备模型(HPEM)执行的IEDF的数值结果。检查具有不同压力和输入功率的相关气体混合物(Ar,ArH2和ArO2)的等离子体。将数值结果与实验获得的数据进行比较。

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