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Reaction pathways and mechanism for ammonia formation and removal over palladium-based three-way catalysts: Multiple roles of CO

机译:钯基三效催化剂上氨形成和脱除反应的反应途径和机理:CO的多重作用

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摘要

In-situ ammonia generation over a three-way catalyst is an important part of the "passive ammonia SCR" technology being developed at GM Global R&D as a low-cost alternative to the current lean NO_x emission control technologies. The purpose of this laboratory reactor study is to clarify the reaction pathways and to identify/quantify the key controlling factors for the formation and destruction of ammonia over Pd-based three-way catalysts under realistic feedstream conditions simulating the exhaust from a lean gasoline engine operating at fuel-rich air-fuel ratios. In addition to the "full-feed" experiments, we also conducted some "simple-feed" experiments to better understand the NH3 formation process (via the NO + H2 reaction with and without CO) as well as the possible removal process of the NH3 formed (via the NH3 + O2 reaction or NH3 decomposition). Of particular interest in this study are the multiple roles that CO plays in both the formation and destruction of NH3. It is also found that the presence of Rh and/or Ce in a Pd-based three-way catalyst decreases the amount of NH3 formation significantly under fuel-rich (net-reducing) conditions of practical interest.
机译:通过三元催化器原位生成氨是通用汽车全球研发部门正在开发的“被动氨SCR”技术的重要组成部分,它是当前稀薄NO_x排放控制技术的低成本替代品。这项实验室反应堆研究的目的是澄清反应路径,并确定/量化在实际进料流条件下模拟稀汽油发动机运行的废气后,Pd基三元催化剂上氨形成和破坏的关键控制因素。以燃料丰富的空燃比除了“完全进料”实验外,我们还进行了一些“简单进料”实验,以更好地了解NH3的形成过程(通过有无CO的NO + H2反应)以及可能的NH3去除过程。形成(通过NH3 + O2反应或NH3分解)。在这项研究中特别感兴趣的是CO在NH3的形成和破坏中所起的多种作用。还发现在实际感兴趣的富含燃料(净减少)的条件下,基于Pd的三元催化剂中Rh和/或Ce的存在显着降低了NH 3的形成量。

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