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Enhancing the low temperature oxidation performance over a Pt and a Pt–Pd diesel oxidation catalyst

机译:增强Pt和Pt-Pd柴油氧化催化剂的低温氧化性能

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摘要

The influence of hydrogen over platinum and combined platinum–palladium diesel oxidation catalysts were investigated on the oxidation kinetics of CO, HC and NO. Although H2 has been reported to have a positive effect on CO and HC oxidation as well as NO2 formation over platinum catalysts, there is still uncertainty whether this is due to the temperature rise caused by H2 oxidation or the result of a change in the reaction kinetics of CO, HC and NO oxidation by the production of intermediate species. The results have showed smaller H2 concentrations are more effective in improving the catalyst light-off temperature as well as promoting NO oxidation over both platinum and platinum–palladium catalysts. It is suggested that these benefits are a result of not only the exothermic reactions which in turn increase the local catalyst temperature but also H2 increasing the rate of reactions and the species accessibility to the catalyst active sites thus further CO, HC and NO oxidation can occur at lower catalyst temperatures.
机译:研究了氢气对铂和铂-钯组合柴油氧化催化剂的影响对CO,HC和NO氧化动力学的影响。尽管据报道氢气对铂催化剂上的CO和HC氧化以及NO2的形成有积极影响,但是仍然不确定这是否是由于H2氧化引起的温度升高还是反应动力学变化的结果通过产生中间物种来氧化CO,HC和NO。结果表明,相对于铂催化剂和铂钯催化剂,较小的H2浓度在改善催化剂起燃温度以及促进NO氧化方面更有效。提出这些益处不仅是放热反应的结果,放热反应反过来又提高了局部催化剂的温度,而且氢气还提高了反应速率,并使物种接近催化剂活性位点,从而进一步发生了CO,HC和NO氧化在较低的催化剂温度下。

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