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Static elimination performance of a corona ionizer in nitrogen-based electronegative gases

机译:电晕离子发生器在氮基负电性气体中的静电消除性能

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Static neutralization characteristics of an AC corona ionizer in oxygen-free gas atmospheres such as mixed N-SF and N-CFI gases have been explored and compared with those in ambient air and pure nitrogen. In pure nitrogen, the negative emitter current is much larger than the positive one due to difference in the mobility between negative (electrons) and positive (ions) carriers; hence the product final voltage VPF deviates to -2 kV. With introduction of CFI up to 0.01%, however, VPF reduces to around 0 V, while it happens at as high as 10% in O. Therefore it is found that the amount of CFI needed to improve the ion balance is three orders of magnitude smaller than that of O, due to higher electron affinity of a CFI molecule.
机译:已经研究了交流电晕电离器在无氧气体气氛(例如N-SF和N-CFI混合气体)中的静态中和特性,并将其与环境空气和纯氮气中的静电中和特性进行了比较。在纯氮中,由于负(电子)和正(离子)载流子之间迁移率的差异,负发射极电流比正发射极电流大得多。因此产品最终电压VPF偏差为-2 kV。然而,随着CFI的引入高达0.01%,VPF降低至大约0 V,而O中的VPF高达10%。因此,发现改善离子平衡所需的CFI量为三个数量级。由于CFI分子具有更高的电子亲和力,因此比O的离子更小。

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