首页> 外文期刊>IEEE Transactions on Plasma Science >'On the ionization of air for removal of noxious effluvia' (Air ionization of indoor environments for control of volatile and particulate contaminants with nonthermal plasmas generated by dielectric-barrier discharge)
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'On the ionization of air for removal of noxious effluvia' (Air ionization of indoor environments for control of volatile and particulate contaminants with nonthermal plasmas generated by dielectric-barrier discharge)

机译:“关于空气的电离以去除有害的流出物”(室内环境的空气电离,以通过介电势垒放电产生的非热等离子体控制挥发性和微粒污染物)

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摘要

Recent developments in the application of controllable air ionization processes that apply dielectric-barrier discharge devices to generate nonthermal plasmas have led to applications for chemical and biological decontamination in indoor air environments. These include significant reductions in airborne microbials, neutralization of odors, and reductions of specific volatile organic compounds (VOCs). Removal of very fine particulates (PM/sub x/) is also is enhanced by air ionization. The process of air ionization involves the electronically induced formation of small air ions, including reactive oxygen species, such as superoxide O/sub 2//spl middot//sup -/, the diatomic oxygen radical anion, which react rapidly with airborne VOC and PM/sub x/. The physics and chemistry of air ionization, and its utility for contributing to significant improvements in indoor air quality are discussed.
机译:可控空气电离过程的应用中的最新发展应用介电势垒放电装置产生非热等离子体,已导致在室内空气环境中进行化学和生物净化的应用。这些措施包括大量减少空气传播的微生物,中和气味以及减少特定的挥发性有机化合物(VOC)。空气电离还可以提高非常细小的颗粒(PM / sub x /)的去除率。空气电离过程涉及电子诱导的小空气离子的形成,包括活性氧,例如超氧O / sub 2 // spl middot // sup-/,双原子氧自由基阴离子,它们与机载VOC和PM / sub x /。讨论了空气电离的物理和化学原理及其在室内空气质量显着改善中的作用。

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