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Titanium Dioxide/Zeolite Catalytic Adsorbent for the Removal of NO and Acetone Vapors

机译:二氧化钛/沸石催化吸附剂用于去除NO和丙酮蒸气

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摘要

This study delineates a simple and versatile approach for the removal of nitrogen monoxide (NO) and volatile organic vapors over composites of titanium dioxide (TiO_2) catalyst/zeolite adsorbent under ultraviolet (UV) irradiation at ambient temperature. The catalytic adsorbents with different TiO_2/H-ZSM-5 zeolite ratios were prepared by a simple insipient wetness impregnation method. It was found that a 60%/40% weight ratio of TiO_2/H-ZSM-5 composite is most effective and can achieve over 90% efficiency for the removal of NO and acetone vapors. This composite also showed a better long-term activity than that of bulk TiO_2 photocatalyst or zeolite adsorbent. The experimental results revealed that photocatalytic decomposition of NO was dramatically enhanced in the presence of acetone. NO also promoted the acetone oxidation under humid conditions. Furthermore, the co-existence of acetone and NO in the gaseous stream could reduce acid accumulation on the surface of the catalyst as confirmed by Fourier-transform infrared spectroscopy. Thus, the TiO_2/zeolite catalytic adsorbent could have a high potential for the removal of multiple air pollutants in the indoor air environment.
机译:这项研究描绘了一种简单而通用的方法,用于在环境温度下在紫外线(UV)照射下去除二氧化钛(TiO_2)催化剂/沸石吸附剂复合材料上的一氧化氮(NO)和挥发性有机蒸气。采用简单的浸润浸渍法制备了不同TiO_2 / H-ZSM-5分子筛比的催化吸附剂。发现TiO 2 / H-ZSM-5复合材料的60%/ 40%重量比是最有效的,并且可以达到超过90%的去除NO和丙酮蒸气的效率。该复合材料还具有比块状TiO_2光催化剂或沸石吸附剂更好的长期活性。实验结果表明,在丙酮存在下,NO的光催化分解显着增强。 NO在潮湿条件下也促进了丙酮的氧化。此外,通过傅里叶变换红外光谱证实,气流中丙酮和NO的共存可减少酸在催化剂表面的积累。因此,TiO_2 /沸石催化吸附剂具有去除室内空气环境中多种空气污染物的高潜力。

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  • 来源
    《Journal of the air & waste management association》 |2009年第10期|1186-1193|共8页
  • 作者单位

    Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan, Republic of China;

    Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan, Republic of China;

    Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan, Republic of China;

    Institute of Environmental Engineering, National Chiao Tung University, Hsinchu, Taiwan, Republic of China;

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