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Synergistic Effect of Nanophotocatalysis and Nonthermal Plasma on the Removal of Indoor HCHO

机译:纳米光催化与非热等离子体协同去除室内HCHO

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摘要

Photocatalysis is an effective method of air purification at the condition of a higher pollutant concentration. However, its wide application in indoor air cleaning is limited due to the low level of indoor air contaminants. Immobilizing the nanosized TiO_2 particles on the surface of activated carbon filter (TiO_2/AC film) could increase the photocatalytic reaction rate as a local high pollutant concentration can be formed on the surface of TiO_2 by the adsorption of AC. However, the pollutant removal still decreased quickly with the increase in flow velocity, which results in a decrease in air treatment capacity. In order to improve the air treatment capacity by the photocatalytic oxidation (PCO) method, this paper used formaldehyde (HCHO) as a contaminant to study the effect of combination of PCO with nonthermal plasma technology (NTP) on the removal of HCHO. The experimental results show that HCHO removal is more effective with line-to-plate electrode discharge reactor; the HCHO removal and the reaction rate can be enhanced and the amount of air that needs to be cleaned can be improved. Meanwhile, the results show that there is the synergistic effect on the indoor air purification by the combination of PCO with NTP.
机译:在较高的污染物浓度下,光催化是一种有效的空气净化方法。然而,由于室内空气污染物含量低,其在室内空气清洁中的广泛应用受到限制。将纳米TiO_2颗粒固定在活性炭过滤器(TiO_2 / AC膜)表面可以提高光催化反应速率,因为通过吸附AC可以在TiO_2表面形成局部高浓度的污染物。然而,随着流速的增加,污染物的去除仍然迅速下降,这导致空气处理能力的下降。为了提高光催化氧化法(PCO)的空气处理能力,以甲醛(HCHO)为污染物,研究了PCO与非热等离子体技术(NTP)联合使用对去除HCHO的影响。实验结果表明,线对板电极放电反应器对HCHO的去除效果更好。可以提高HCHO的去除率和反应速率,并可以改善需要净化的空气量。同时,结果表明,PCO与NTP的结合对室内空气净化具有协同作用。

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