2016
DOI: 10.1007/978-3-319-09253-9_11
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Applications of Low-Temperature Plasmas

Abstract: Low-temperature plasmas are present in a broad field of technological applications and experimented an enormous growth after the end of the twentieth century. The most important examples of applications are lamps, pretreatment of polymer materials, packaging materials, treatment of surfaces, waste, air pollution mitigation, microelectronics, and flat panels display. Recently new applications in medicine, pharmacy, foods, biology, biomass and biofuel processing, attracted the interest of the industry and the sc… Show more

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Cited by 4 publications
(2 citation statements)
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References 55 publications
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“…It is based on the requirement that the energy transfer process of free electrons to heavy particles via collision transitions must dominate over radiation transitions under high electron number density conditions. 46 Whether the LTE condition is satisfied can be estimated by the McWhirter criterion: 47…”
mentioning
confidence: 99%
“…It is based on the requirement that the energy transfer process of free electrons to heavy particles via collision transitions must dominate over radiation transitions under high electron number density conditions. 46 Whether the LTE condition is satisfied can be estimated by the McWhirter criterion: 47…”
mentioning
confidence: 99%
“…Conhecido como o quarto estado da matéria, por possuir propriedades ópticas, elétricas e magnéticas diferentes de um gás neutro, o plasma gasoso é um gás ionizado, normalmente composto por elétrons livres, íons positivos e negativos, átomos e/ou moléculas reativas, moléculas neutras e fótons (Thriumdas et al, 2017;Loureiro & Amorim, 2016). O estado de plasma é obtido através da mistura de um gás ou mistura de gases associados a uma fonte de energia em quantidade suficiente para ser operado em sistemas de baixa pressão ou em pressão atmosférica (Loureiro & Amorim, 2016).…”
Section: Introductionunclassified