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SF6 abatement in a packed bed plasma reactor: study towards the effect of O2 concentration

机译:填充床等离子体反应器中的SF6减排:研究O2浓度的影响

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SF _(6) is a greenhouse gas with extremely high global warming potential value (GWP). In this paper, oxygen and a packed bed plasma reactor (PBR) were applied to remove it. The synergistic effect between oxygen and PBRs was evaluated by the destruction and removal efficiency (DRE) and energy yield (EY) at different oxygen concentrations. The results show that excessive oxygen weakened the micro-discharge in a PBR to suppress SF _(6) degradation while the addition of a proper amount of oxygen (1–4%) can improve the DRE and EY. 2% O _(2) in the system had the best promoting effect on the destruction of 6–10% SF _(6) , which made the maximum energy yield (EY) increase by 50.99% to 37.99 g kW ~(?1) h ~(?1) (SF _(6) concentration was 10%, flow rate was 150 mL min ~(?1) ). Moreover, in the flow rate range of 100 mL min ~(?1) to 250 mL min ~(?1) , the DRE decreased and the EY increased with the flow rate. In addition, the selectivity of different products were affected by the oxygen concentration. For 6% SF _(6) , SO _(2) F _(2) selectivity was always the highest while SO _(2) was always the lowest; when the oxygen concentration did not exceed 2%, SOF _(2) selectivity was higher than SOF _(4) , otherwise, SOF _(4) selectivity was higher than SOF _(2) . This paper provided experimental support for better understanding of the effect of additional gas concentration on SF _(6) decomposition in a PBR.
机译:SF _(6)是一种温室气体,具有极高的全球变暖潜能值(GWP)。在本文中,使用氧气和填充床等离子体反应器(PBR)去除氧气。通过在不同氧气浓度下的破坏和去除效率(DRE)和能量产率(EY)来评估氧气和PBR之间的协同作用。结果表明,过量的氧气削弱了PBR中的微放电,从而抑制了SF _(6)的降解,而适量的氧气(1-4%)的添加可以改善DRE和EY。系统中2%的O _(2)对6-10%SF _(6)的破坏具有最佳的促进作用,这使得最大能量产率(EY)提高50.99%,达到37.99 g kW〜(?1 )h〜(?1)(SF_(6)浓度为10%,流速为150 mL min〜(?1))。而且,在100mLmin〜(Δ1)〜250mLmin〜(Δ1)的流量范围内,DRE降低,EY随流量增加而增加。另外,不同产物的选择性受到氧浓度的影响。对于6%SF _(6),SO _(2)F _(2)的选择性始终最高,而SO _(2)的选择性最低;当氧浓度不超过2%时,SOF _(2)的选择性高于SOF _(4);否则,SOF _(4)的选择性高于SOF _(2)。本文为更好地了解附加气体浓度对PBR中SF _(6)分解的影响提供了实验支持。

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