首页> 外文会议>Industry Applications Conference, 1997. Thirty-Second IAS Annual Meeting, IAS '97., Conference Record of the 1997 IEEE >Control of byproduct distributions in plasma chemical processing of hazardous air pollutants
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Control of byproduct distributions in plasma chemical processing of hazardous air pollutants

机译:控制有害空气污染物的等离子体化学处理过程中副产物的分布

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Plasma chemical behavior of hazardous air pollutants (HAPs) (Cl/sub 2/C=CCl/sub 2/, Cl/sub 2/C=CHCl, Cl/sub 3/C-CH/sub 3/, Cl/sub 2/CH-CH/sub 2/Cl, CH/sub 3/Cl, and CH/sub 3/Br), their molecular probes (CH/sub 4/, CH/sub 3/-CH/sub 3/, and CH/sub 2/=CH/sub 2/), and the carbon oxides was investigated with a ferroelectric packed-bed plasma reactor to obtain information on the formation of carbon oxides and N/sub 2/O. If has been shown that the oxidation of CO to CO/sub 2/ is a slow reaction in plasma, and that CO and CO/sub 2/ mainly result from different precursors. The control of CO/sub x/ selectivities is rather difficult at this stage. The process of N/sub 2/O formation is affected by HAP structures and oxygen concentration. In the decomposition of olefinic HAPs such as Cl/sub 2/C=CCl/sub 2/ and Cl/sub 2/C=CHCl, residence time reduction is effective in suppressing N/sub 2/O formation. In the cases of CH/sub 3/Cl and CH/sub 3/Br, low specific energy density operations could be necessary to reduce N/sub 2/O concentrations. The yields and selectivities of CO, CO/sub 2/, and N/sub 2/O change drastically by adding only 2% of oxygen to N/sub 2/ and oxygen concentration is not a good factor to control these inorganic oxides.
机译:有害空气污染物(HAP)的等离子体化学行为(Cl / sub 2 / C = CCl / sub 2 /,Cl / sub 2 / C = CHCl,Cl / sub 3 / C-CH / sub 3 /,Cl / sub 2 / CH-CH / sub 2 / Cl,CH / sub 3 / Cl和CH / sub 3 / Br),它们的分子探针(CH / sub 4 /,CH / sub 3 / -CH / sub 3 /和CH / sub 2 / = CH / sub 2 /),并且用铁电填充床等离子体反应器研究碳氧化物以获得关于碳氧化物和N / sub 2 / O形成的信息。如果已经证明CO氧化为CO / sub 2 /在血浆中是缓慢的反应,并且CO和CO / sub 2 /主要是由不同的前体产生的。在此阶段,控制CO / sub x /选择性非常困难。 N / sub 2 / O的形成过程受HAP结构和氧浓度的影响。在烯烃HAP的分解中,例如Cl / sub 2 / C = CCl / sub 2 /和Cl / sub 2 / C = CHCl,停留时间的减少对抑制N / sub 2 / O的形成是有效的。在CH / sub 3 / Cl和CH / sub 3 / Br的情况下,可能需要进行低比能密度操作以降低N / sub 2 / O的浓度。通过仅向N / sub 2 /中添加2%的氧气,CO,CO / sub 2 /和N / sub 2 / O的收率和选择性会急剧变化,并且氧气浓度不是控制这些无机氧化物的好因素。

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