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Diagnosis of OH radical by optical emission spectroscopy in atmospheric pressure unsaturated humid air corona discharge and its implication to desulphurization of flue gas

机译:大气不饱和湿空气电晕放电中的光发射光谱法诊断OH自由基及其对烟气脱硫的意义

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OH radical in the corona discharge with pipe-nozzle-plate electrode has been diagnosed by optical emission spectroscopy. Spatial variations of OH radical emission in discharge gap have been measured Relative intensity of OH radical emission spectroscopy increases with increasing water vapor flux injected into the reactor or intensity of electric field supported. In positive pulsed corona discharge, relative intensity is higher than that in positive DC corona discharge and lower than that in negative DC corona discharge. Strongest intensity of OH radical spectrum appears within the range of 5 nun near the discharge nozzle-electrode. In addition, it is proved that the efficiency of desulphurization from flue gas by pulsed corona discharge plasma processes can be improved when OH radical is produced in the reactor
机译:通过光发射光谱法已经诊断出管喷嘴板电极的电晕放电中的OH自由基。已测量了放电间隙中OH自由基发射的空间变化,OH自由基发射光谱的相对强度随注入反应器的水蒸气通量或所支持电场强度的增加而增加。在正脉冲电晕放电中,相对强度高于正直流电晕放电,但低于负直流电晕放电。 OH自由基光谱的最强强度出现在放电喷嘴电极附近的5 nun范围内。另外,已经证明当在反应器中产生OH自由基时,通过脉冲电晕放电等离子体过程从烟道气中脱硫的效率可以提高。

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