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Removal of high concentration of nitrous oxide for anesthetic gas using nonthermal plasma combined with adsorbent

机译:非热等离子体结合吸附剂去除高浓度一氧化二氮用于麻醉气体

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Nitrous oxide (N2O), which has been used as an anesthetic gas in hospitals, is one of greenhouse gases and it should be removed. Nonthermal plasma is considered to be useful for low concentration gas treatment due to low electron density. N2O is extremely stable in the troposphere and it is difficult to decompose it. In this paper, the high concentration of N2O removal system was investigated using nonthermal plasma combined with adsorbent. N2O gas that simulates the waste gas from anesthetic equipment used for operation rooms was decomposed using the surface discharge plasma reactor. When N2O was decomposed, NOx (=NO + NO2) was generated. The generated NOx was adsorbed by adsorbent. As a result, 66% of N2O decomposition efficiency was achieved with 12.8% of N2O, the flow rate of 1.1 L/min, and the input power to the plasma reactor of 375 W. Furthermore, 0.4% of NO and 1.0% of NO2 were generated upon N2O decomposition; both of them were removed using adsorbent. The adsorbed NOx was able to be decomposed with nitrogen plasma. It was demonstrated that high concentration of N2O removal system can be accomplished using nonthermal plasma combined with adsorbent process. As a practical process, much higher N2O removal without NOx formation can be accomplished with a series of plasma reactors with recirculation, followed by N2 plasma for NOx reduction system.
机译:一氧化二氮(N2O)已被用作医院的麻醉气体,是一种温室气体,应将其除去。由于低电子密度,非热等离子体被认为可用于低浓度气体处理。 N2O在对流层中非常稳定,很难分解。本文研究了非热等离子体结合吸附剂对高浓度N2O去除系统的影响。使用表面放电等离子体反应器分解了模拟来自手术室麻醉设备废气的N2O气体。当N 2 O分解时,产生NO x(= NO + NO 2)。产生的NOx被吸附剂吸附。结果,以12.8%的N2O,1.1 L / min的流速和375 W的等离子体反应器输入功率实现了66%的N2O分解效率。此外,还有0.4%的NO和1.0%的NO2是由N2O分解产生的;它们都使用吸附剂去除。吸附的NOx能够被氮等离子体分解。结果表明,使用非热等离子体结合吸附工艺可以实现高浓度的N2O去除系统。作为一种实际方法,可以使用一系列具有再循环功能的等离子反应器实现更高的N2O去除率,而无需再形成NOx,然后再进行N2等离子体还原NOx。

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