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Novel Catalytic Dielectric Barrier Discharge Reactor for Gas-Phase Abatement of Isopropanol

机译:新型气相介电异丙醇气相催化放电反应器

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Catalytic gas-phase abatement of air containing 250 ppm of isopropanol (IPA) was carried out with a novel dielectric barrier discharge (DBD) reactor with the inner catalytic electrode made of sintered metal fibers (SMF). The optimization of the reactor performance was carried out by varying the voltage from 12.5 to 22.5 kV and the frequency in the range 200–275 Hz. The performance was significantly improved by modifying SMF with Mn and Co oxide. Under the experimental conditions used, the MnO x /SMF showed a higher activity towards total oxidation of IPA as compared to CoO x /SMF and SMF electrodes. The complete destruction of 250 ppm of IPA was attained with a specific input energy of ~235 J/L using the MnO x /SMF catalytic electrode, whereas, the total oxidation was achieved at 760 J/L. The better performance of the MnO x /SMF compared to other catalytic electrodes suggests the formation of short-lived active species on its surface by the in-situ decomposition of ozone.
机译:使用新型介电势垒放电(DBD)反应器,以内部催化电极由烧结金属纤维(SMF)制成,对包含250 ppm异丙醇(IPA)的空气进行催化气相减排。通过将电压从12.5 kV改变为22.5 kV,并在200-275 Hz范围内改变频率,可以优化反应堆性能。通过用Mn和Co氧化物改性SMF可以显着提高性能。在所使用的实验条件下,与CoO x / SMF和SMF电极相比,MnO x / SMF电极对IPA的总氧化具有更高的活性。使用MnO x / SMF催化电极,在约235 J / L的比输入能量下,可以完全破坏250 ppm的IPA,而总氧化达到760 J / L。与其他催化电极相比,MnO x / SMF的性能更好,表明通过臭氧的原位分解在其表面形成了短寿命的活性物质。

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