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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Removal of formaldehyde by a pulsed dielectric barrier discharge in dry air in the 20 degrees C to 300 degrees C temperature range
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Removal of formaldehyde by a pulsed dielectric barrier discharge in dry air in the 20 degrees C to 300 degrees C temperature range

机译:在20摄氏度至300摄氏度的温度范围内,通过在干燥空气中进行脉冲介电势垒放电来去除甲醛

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摘要

The influence of the gas mixture temperature, from 20 degrees C up to 300 degrees C, on the removal of formaldehyde, diluted at low concentration (less than 800 ppm) in dry air at atmospheric pressure, by a pulsed dielectric barrier discharge (DBD) is studied by means of Fourier transform infrared spectroscopy and micro gas chromatography. Efficient removal of CH2O is obtained and it is found that the characteristic energy, less than 200 J l(-1), is a decreasing function of the temperature over the whole range of concentration values under consideration. Byproducts issued from the removal are identified and quantified (CO, CO2, HCOOH, HNO3). Experimental results are analysed using a zero-dimensional simplified DBD-reactor model in order to gain insights on the chemical processes involved. It is shown that the dissociation of the molecule competes with oxidation reactions at low temperature, whereas at high temperature oxidation processes dominate.
机译:混合气体温度(从20摄氏度到300摄氏度)对通过脉冲介电势垒放电(DBD)在大气中在干燥空气中以低浓度(小于800 ppm)稀释的甲醛的去除效果的影响用傅立叶变换红外光谱法和微型气相色谱法研究。有效去除CH2O,发现特征能量小于200 J l(-1)是所考虑的整个浓度值范围内温度的下降函数。识别并量化从去除过程中产生的副产物(CO,CO2,HCOOH,HNO3)。使用零维简化DBD反应器模型分析实验结果,以便深入了解所涉及的化学过程。结果表明,分子的解离在低温下与氧化反应竞争,而在高温下,氧化过程占主导。

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