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Combination of a pulsed microwave plasma with a catalyst for acetylene oxidation

机译:脉冲微波等离子体与乙炔氧化催化剂的组合

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The potential of an approach combining a pulsed microwave discharge with a catalytic packed bed reactor for the oxidation of volatile organic compounds (VOC) has been studied. The ignition of the plasma has been made possible by inserting ferroelectric BaTiO3 pellets inside the microwave excitator. As a test VOC molecule, acetylene (C2H2) in an amount of 200 ppm in dry air was used. The total oxidation products CO and CO2 have been monitored downstream of the plasma region by tuneable diode laser absorption spectroscopy in the infrared region. The oxidative efficiency was found to increase linearly with the pulse repetition rate. The oxidative efficiency and the CO2/CO selectivity were considerably enhanced when the catalyst was located inside the plasma region, which shows the synergetic effect of the plasma-catalyst combination. (C) 2004 American Institute of Physics.
机译:研究了将脉冲微波放电与催化填充床反应器相结合以氧化挥发性有机化合物(VOC)的方法的潜力。通过将铁电BaTiO3颗粒插入微波激励器内,可以点燃等离子体。作为测试VOC分子,使用干燥空气中200 ppm的乙炔(C2H2)。总氧化产物CO和CO2已经通过红外区域中的可调二极管激光吸收光谱法在等离子体区域的下游进行了监测。发现氧化效率随脉冲重复率线性增加。当催化剂位于等离子体区域内部时,氧化效率和CO2 / CO选择性大大提高,这显示了等离子体-催化剂组合的协同作用。 (C)2004美国物理研究所。

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