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首页> 外文期刊>Catalysis Today >Catalytic activity and thermal stability of Au-CuO/SiO2 catalysts for the low temperature oxidation of CO in the presence of propylene and NO
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Catalytic activity and thermal stability of Au-CuO/SiO2 catalysts for the low temperature oxidation of CO in the presence of propylene and NO

机译:Au-CuO / SiO2催化剂在丙烯和NO存在下低温氧化CO的催化活性和热稳定性

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Oxidation catalysts in emissions control systems generally contain Pd/Pt and require exhaust temperatures above 200 C to operate, but under low-temperature conditions, oxidation of CO and hydrocarbons are challenging. As engine efficiency improves and exhaust temperature decreases, there is an increasing demand for high emissions control performance at low temperatures. Therefore, it becomes imperative to design new catalysts that are active at low operating temperatures. Au-CuO" catalysts, made through the oxidation of AuCu alloy nanoparticles, have been found to be highly active for the oxidation of CO at low reaction temperatures. The catalytic activity for the conversion of CO using Au-CuO_x/SiO2 was evaluated under simulated lean exhaust conditions (CO, C3H6, NO, H2O, O2 and Ar). It was found that the oxidation of CO over the Au-CuO_x/SiO2 catalyst was inhibited when C3H5 or NO was introduced into the reaction stream. Interestingly, a physical mixture of Au-CuO_x/SiO2 and Pt/Al2O3 worked in synergy to enhance the oxidation of NO to NO2 with 90% conversion near 300 °C in the presence of CO. This reactivity is on par with Pt/Al2O3 NO oxidation activity in the absence of CO. The Au-CuO_x/SiO2 catalysts were also found to be thermally stable after being aged up to 700 °C for 10 h. The resistance to particle sintering can be attributed to the CuO_x "anchoring" the Au particles to the silica support.
机译:排放控制系统中的氧化催化剂通常包含Pd / Pt,并且要求排气温度高于200 C才能运行,但是在低温条件下,CO和碳氢化合物的氧化具有挑战性。随着发动机效率的提高和排气温度的降低,对在低温下实现高排放控制性能的需求不断增长。因此,必须设计在低工作温度下具有活性的新型催化剂。已发现通过AuCu合金纳米粒子的氧化制得的Au-CuO“催化剂在低反应温度下对CO的氧化具有很高的活性。在模拟下评估了使用Au-CuO_x / SiO2转化CO的催化活性。稀薄的排气条件(CO,C3H6,NO,H2O,O2和Ar)发现,当将C3H5或NO引入反应流中时,CO在Au-CuO_x / SiO2催化剂上的氧化被抑制。 Au-CuO_x / SiO2和Pt / Al2O3的混合物协同作用,在存在CO的情况下,在300°C附近,以90%的转化率增强了NO氧化为NO2的氧化。该反应活性与Pt / Al2O3的NO氧化活性相当。 Au-CuO_x / SiO2催化剂在高达700°C的温度下老化10小时后也发现是热稳定的。颗粒烧结的抵抗力可归因于CuO_x将Au颗粒“固定”在了二氧化硅上支持。

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