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Effects of temperature and reductant type on the process of NOx storage reduction over Pt/Ba/CeO2 catalysts

机译:温度和还原剂类型对Pt / Ba / CeO2催化剂上NOx储存还原过程的影响

摘要

The influences of temperature and reductant type on NOx storage and reduction behavior were studied by transient lean/rich cycles and in situ diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS) experiments over Pt/Ba/CeO2 catalysts. It is found that the reducing ability of H-2 is more predominant than that of CO and C3H6 especially at low temperatures. DRIFTS results showed that NOx can be stored as nitrates on both Ba and Ce sites by replacing carbonates species during the lean phase. During the rich phase, however, H-2 regenerated Ba storage sites more effectively than did CO and C3H6, and Ba(NO3)(2) could be easier reduced than Ce(NO3)(4). The relatively low reduction performance of CO was attributed to Pt sites being poisoned by CO, which affected low temperature performance, and by carbonates formation, which affected high temperature conversions. The least reactivity of C3H6 was due to its lowest activation ability by the catalysts. Furthermore, water addition had a positive effect on CO reduction ability at 200 degrees C but little influence at elevated temperatures. It was assumed that H2O improved the low temperature NOx reduction process by alleviating CO poisoning of Pt. (C) 2011 Elsevier B.V. All rights reserved.
机译:通过短暂的稀/富循环以及Pt / Ba / CeO2催化剂的原位漫反射红外傅里叶变换光谱(DRIFTS)实验研究了温度和还原剂类型对NOx储存和还原行为的影响。发现H-2的还原能力比CO和C3H6的还原能力更重要,特别是在低温下。 DRIFTS结果表明,通过在稀相中替换碳酸盐种类,NOx可以硝酸盐的形式存储在Ba和Ce处。然而,在富油阶段,H-2比CO和C3H6更有效地再生了Ba储存位,Ba(NO3)(2)比Ce(NO3)(4)更容易还原。 CO的相对较低的还原性能归因于Pt位点被CO中毒,这影响了低温性能,并且归因于碳酸盐的形成,其影响了高温转化。 C 3 H 6的反应性最低是由于其催化剂的最低活化能力。此外,添加水对200℃下的CO还原能力具有积极影响,但是在升高的温度下影响很小。假设H2O通过减轻Pt的CO中毒改善了低温NOx还原过程。 (C)2011 Elsevier B.V.保留所有权利。

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