首页> 美国卫生研究院文献>Nanomaterials >Enhanced Oxygen Vacancies in a Two-Dimensional MnAl-Layered Double Oxide Prepared via Flash Nanoprecipitation Offers High Selective Catalytic Reduction of NOx with NH3
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Enhanced Oxygen Vacancies in a Two-Dimensional MnAl-Layered Double Oxide Prepared via Flash Nanoprecipitation Offers High Selective Catalytic Reduction of NOx with NH3

机译:通过闪速纳米沉淀制备的二维MnAl层状双氧化物中增强的氧空位提供了NH3对NOx的高选择性催化还原

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摘要

A two-dimensional MnAl-layered double oxide (LDO) was obtained by flash nanoprecipitation method (FNP) and used for the selective catalytic reduction of NOx with NH3. The MnAl-LDO (FNP) catalyst formed a particle size of 114.9 nm. Further characterization exhibited rich oxygen vacancies and strong redox property to promote the catalytic activity at low temperature. The MnAl-LDO (FNP) catalyst performed excellent NO conversion above 80% at the temperature range of 100–400 °C, and N2 selectivity above 90% below 200 °C, with a gas hourly space velocity (GHSV) of 60,000 h−1, and a NO concentration of 500 ppm. The maximum NO conversion is 100% at 200 °C; when the temperature in 150–250 °C, the NO conversion can also reach 95%. The remarkable low-temperature catalytic performance of the MnAl-LDO (FNP) catalyst presented potential applications for controlling NO emissions on the account of the presentation of oxygen vacancies.
机译:通过快速纳米沉淀法(FNP)获得了二维MnAl层状双氧化物(LDO),并用于用NH 3选择性催化还原NOx。 MnAl-LDO(FNP)催化剂的粒径为114.9 nm。进一步表征显示出丰富的氧空位和强的氧化还原性质,以促进低温下的催化活性。 MnAl-LDO(FNP)催化剂在100–400°C的温度范围内表现出卓越的NO转化率,高于80%,N2选择性低于200°C,高于90%,气体时空速(GHSV)为60,000 h < sup> -1 ,NO浓度为500 ppm。在200°C下,最大NO转化率为100%;当温度在150–250°C时,NO转化率也可以达到95%。由于存在氧空位,MnAl-LDO(FNP)催化剂出色的低温催化性能为控制NO排放提供了潜在的应用。

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