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Suppression of Carbon Dust Formation by Nitrogen Injection into Hydrogen Plasmas in Detached Plasma Conditions

机译:在分离的等离子体条件下,通过向氢等离子体注入氮来抑制碳尘的形成

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Chemical erosion of carbon materials and dust formation in low-temperature and neutral particle-dominated plasmas were investigated using high-pressure inductively coupled plasmas. Experiments were performed with Ar/H2/N2 mixture plasma irradiation to graphite targets. The addition of just a few percent of nitrogen gas to hydrogen led to significant suppression of carbon dust formation on the graphite target. From optical emission spectroscopy, CN band spectra were observed strongly in Ar/H2/N2 plasmas with a decrease of CH and C2 band emission intensity. These results showed that CN bond formation, which caused chemical erosion of carbon by producing volatile CN, HCN, and C2N2 particles, might have been a key suppression mechanism of the carbon particle aggregation.
机译:使用高压感应耦合等离子体研究了碳材料的化学腐蚀和低温和中性颗粒为主的等离子体中的粉尘形成。用Ar / H 2 / N 2 混合等离子体辐照石墨靶进行实验。在氢气中仅添加百分之几的氮气就可以显着抑制石墨靶上碳尘的形成。根据光发射光谱,在Ar / H 2 / N 2 等离子体中强烈观察到CN谱带,而CH和C 2 谱带减少发射强度。这些结果表明,形成CN键,通过产生挥发性CN,HCN和C 2 N 2 颗粒而引起碳的化学侵蚀的碳键形成可能是抑制碳的关键机制。碳颗粒聚集。

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