首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Plasma-assisted abatement of SF6 in a dielectric barrier discharge reactor: investigation of the effect of packing materials
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Plasma-assisted abatement of SF6 in a dielectric barrier discharge reactor: investigation of the effect of packing materials

机译:介电阻挡电抗器中SF6的等离子体辅助削减:填料材料效果的研究

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摘要

The greenhouse gas hexafluoride (SF6) and its degradation is a research hotspot in the environmental field. In a double-layer dielectric barrier discharge reactor, the degradation process of SF6 was studied when packed in glass beads or gamma-Al2O3 pellets as well as with no packing system. The results show that the packing materials changed the physical characteristics of the discharge, increasing the equivalent capacitance and discharge power and leading to the generation of more active particles and high-energy electrons. Additionally, the two packing materials effectively improved the degradation removal efficiency (DRE) and energy yield (EY) of SF6. In the gamma-Al2O3 system, 2% SF6 gas obtained a maximum DRE of 85.97% with a 110 W input power and the EY reached 9.17 g kWh(-1), far exceeding the case without packing. Moreover, the glass bead packing had no obvious effect on the degradation products, while the packing of gamma-Al2O3 particles promoted SO2 production and reduced the formation of SOF2, SO2F2 and SOF4. Meanwhile, in the gamma-Al2O3 system, the yield of SO2 increased with increasing input power and some undesirable products such as SO2F2 were reduced. These results show that the addition of suitable packing materials such as gamma-Al2O3 pellets can effectively promote the harmless degradation of SF6.
机译:温室气体六氟化物(SF6)及其降解是环境领域的研究热点。在双层介电阻挡电抗器中,当填充在玻璃珠或γ-Al2O3颗粒中以及没有包装系统时,研究了SF6的降解过程。结果表明,包装材料改变了放电的物理特性,增加了等效电容和放电功率,并导致产生更活跃的颗粒和高能量电子。另外,两个包装材料有效地改善了SF6的降解去除效率(DRE)和能量产量(EY)。在伽玛-Al2O3系统中,2%SF6气体获得最大DRE 85.97%,110W输入功率,EY达到9.17g kWh(-1),远远超过壳体而无需包装。此外,玻璃珠包装对降解产物没有明显的影响,而γ-Al2O3颗粒的包装促进了SO 2生产并减少了SOF2,SO2F2和SOF4的形成。同时,在γ-Al2O3系统中,SO2的产率随着输入功率的增加而增加,并且减少了一些不受欢迎的产品,例如SO2F2。这些结果表明,添加合适的包装材料,例如γ-Al2O3颗粒可以有效地促进SF6的无害降解。

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