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How to Ignite an Atmospheric Pressure Microwave Plasma Torch without Any Additional Igniters

机译:如何在没有任何其他点火器的情况下点燃大气压微波等离子炬

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摘要

This movie shows how an atmospheric pressure plasma torch can be ignited by microwave power with no additional igniters. After ignition of the plasma, a stable and continuous operation of the plasma is possible and the plasma torch can be used for many different applications. On one hand, the hot (3,600 K gas temperature) plasma can be used for chemical processes and on the other hand the cold afterglow (temperatures down to almost RT) can be applied for surface processes. For example chemical syntheses are interesting volume processes. Here the microwave plasma torch can be used for the decomposition of waste gases which are harmful and contribute to the global warming but are needed as etching gases in growing industry sectors like the semiconductor branch. Another application is the dissociation of CO2. Surplus electrical energy from renewable energy sources can be used to dissociate CO2 to CO and O2. The CO can be further processed to gaseous or liquid higher hydrocarbons thereby providing chemical storage of the energy, synthetic fuels or platform chemicals for the chemical industry. Applications of the afterglow of the plasma torch are the treatment of surfaces to increase the adhesion of lacquer, glue or paint, and the sterilization or decontamination of different kind of surfaces. The movie will explain how to ignite the plasma solely by microwave power without any additional igniters, e.g., electric sparks. The microwave plasma torch is based on a combination of two resonators — a coaxial one which provides the ignition of the plasma and a cylindrical one which guarantees a continuous and stable operation of the plasma after ignition. The plasma can be operated in a long microwave transparent tube for volume processes or shaped by orifices for surface treatment purposes.
机译:这部电影显示了如何在没有其他点火器的情况下用微波功率点火大气压等离子体炬。在点燃等离子体之后,可以稳定且连续地操作等离子体,并且等离子体炬可以用于许多不同的应用。一方面,热等离子体(气体温度为3,600 K)可用于化学过程,另一方面,冷余辉(温度低至几乎RT)可用于表面过程。例如,化学合成是令人感兴趣的体积过程。在这里,微波等离子炬可用于分解有害气体,这些气体有害并导致全球变暖,但在增长迅速的工业领域(如半导体分支机构)中需要用作蚀刻气体。另一个应用是二氧化碳的分解。来自可再生能源的多余电能可用于将CO2分解为CO和O2。可以将CO进一步加工为气态或液态高级烃,从而为化学工业提供能量,合成燃料或平台化学品的化学存储。等离子炬残光的应用是对表面进行处理以增加漆,胶水或油漆的附着力,以及对不同类型的表面进行灭菌或去污。电影将说明如何仅通过微波功率来点燃等离子体,而没有任何其他点火器,例如电火花。微波等离子体炬基于两个谐振器的组合,一个是同轴的,用于点燃等离子体;另一个是圆柱形的,用于保证点燃后等离子体的连续且稳定的运行。等离子体可以在较长的微波透明管中进行批量处理,也可以通过孔进行成型以进行表面处理。

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