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Direct Decomposition of Anesthetic Gas Exhaust Using Atmospheric Pressure Multigas Inductively Coupled Plasma

机译:常压多气体感应耦合等离子体直接分解麻醉性废气

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摘要

In our research group, an atmospheric multigas inductively coupled plasma (ICP) source was developed for industrial plasma processing and elemental analysis. The plasma source can stably generate atmospheric thermal plasma not only by Ar but also by He, $hbox{O}_{2}$, $hbox{N}_{2}$, $ hbox{CO}_{2}$, air, and their mixture gas. In this paper, the plasma source was applied for anesthetic gas decomposition including $hbox{N}_{2}hbox{O}$, which is a kind of global warming gases. Atmospheric thermal plasma was generated by mixture gas of $hbox{N}_{2}hbox{O}$, $ hbox{O}_{2}$, and air. It corresponds to actual gas composition for up to three surgery exhaust. Spectroscopic characteristics of generated plasma and composition of treated gas were investigated. By using optimally shaped ICP torch, 99.9% of decomposition rate and 942 g/kWh of high energy efficiency were achieved. However, around 3% of $hbox{NO}_{x}$ was generated as by-products due to high gas temperature.
机译:在我们的研究小组中,开发了一种大气多气体感应耦合等离子体(ICP)源,用于工业等离子体处理和元素分析。等离子体源不仅可以通过Ar而且可以通过He稳定地产生大气热等离子体,$ hbox {O} _ {2} $,$ hbox {N} _ {2} $,$ hbox {CO} _ {2} $ ,空气及其混合气体。在本文中,等离子体源被用于麻醉气体的分解,其中包括$ hbox {N} _ {2} hbox {O} $,这是一种全球变暖气体。大气热等离子体是由$ hbox {N} _ {2} hbox {O} $,$ hbox {O} _ {2} $和空气的混合气体产生的。它对应于最多三个手术排气的实际气体成分。研究了产生的等离子体的光谱特征和处理后的气体的组成。通过使用形状最佳的ICP炬,可实现99.9%的分解率和942 g / kWh的高能效。但是,由于气体温度高,大约$ 3box {NO} _ {x} $中的3%是作为副产品生成的。

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