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The low-temperature performance of NOx storage and reduction catalyst

机译:NOx存储还原催化剂的低温性能

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The catalytic performance and the behavior of NOx storage and reduction (NSR) over a model catalyst for lean-bum gasoline engines have been mainly investigated and be discussed based on the temperature and reducing agents use in this study. The experimental results have shown that the NO storage amount in the lean atmosphere was the same as the NOx reduction amount from the subsequent rich spike (RS) above the temperature of 400 degrees C, while the former was greater than the latter below the temperature of 400 degrees C. This indicated that when the temperature was below 400 degrees C compared with the NOx storage stage, the reduction of the stored NOx is somehow restricted. We found that the reduction efficiencies with the reducing agents decrease in the order H-2 > CO > C3H6 below 400 degrees C, thus not all of the NOx storage sites could be fully regenerated even using an excessive reducing agent of CO or C3H6, which was supplied to the NSR catalyst, while all the NOx storage sites could be fully regenerated if an adequate amount of H-2 was supplied. We also verified that the H-2 generation more favorably occurred through the water gas shift reaction than through the steam reforming reaction. This difference in the H-2 generation could reasonably explain why CO was more efficient for the reduction of the stored NOx than C3H6, and hinted as a promising approach to enhance the low-temperature performance of the current NSR catalysts though promoting the H-2 generation reaction. (c) 2006 Elsevier B.V. All rights reserved.
机译:主要研究了贫油汽油发动机模型催化剂上的催化性能以及NOx的存储和还原行为(NSR),并基于温度和还原剂的使用进行了讨论。实验结果表明,在稀薄大气中的NO储存量与在400摄氏度以上的温度下随后的浓峰值(RS)产生的NOx还原量相同,而前者大于在200摄氏度以下的温度下的NOx还原量。 400摄氏度。这表明,与NOx储存阶段相比,当温度低于400摄氏度时,储存的NOx的还原受到某种程度的限制。我们发现,还原剂的还原效率在低于400摄氏度时以H-2> CO> C3H6的顺序降低,因此,即使使用过量的CO或C3H6还原剂,也不是所有的NOx储存位都可以完全再生。如果将足够量的H-2供入NSR催化剂,则所有的NOx储存位都可以完全再生。我们还证实,通过水煤气变换反应比通过蒸汽重整反应更容易发生H-2生成。 H-2代的这种差异可以合理地解释为什么CO在还原储存的NOx方面比C3H6更有效,并且暗示了通过促进H-2来增强当前NSR催化剂的低温性能的有前途的方法生成反应。 (c)2006 Elsevier B.V.保留所有权利。

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