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Sustained Low Temperature NO_x Reduction

机译:持续低温NO_X减少

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Sustained NO_x reduction at low temperatures, especially in the 150-200 °C range, shares some similarities with the more commonly discussed cold-start challenge, however, poses a number of additional and distinct technical problems. In this project, we set a bold target of achieving and maintaining 90% NO_x conversion at the SCR catalyst inlet temperature of 150 °C. This project is intended to push the boundaries of the existing technologies, while staying within the realm of realistic future practical implementation. In order to meet the resulting challenges at the levels of catalyst fundamentals, system components, and system integration, Cummins has partnered with the DOE, Johnson Matthey, and Pacific Northwest National Lab and initiated the Sustained Low-Temperature NO_x Reduction program at the beginning of 2015 and completed in 2017. Through this collaboration, we are exploring catalyst formulations and catalyst architectures with enhanced catalytic activity at 150°C; opportunities to approach the desirable ratio of NO and NO_2 in the SCR feed gas; options for robust low-temperature reductant delivery; and the requirements for the overall system integration. This paper will provide information on the approach used and share results of an on-engine performance demonstration on the path towards a commercially viable solution.
机译:在低温下持续NO_X降低,特别是在150-200°C范围内,与更常见的冷启动挑战股份的一些相似之处,然而,造成了许多额外和不同的技术问题。在该项目中,我们设定了在150°C的SCR催化剂入口温度下实现和维护90%NO_X转换的大胆目标。该项目旨在推动现有技术的界限,同时留在现实未来实际实施的领域。为了满足催化剂基础知识,系统组成部分和系统整合水平所产生的挑战,康明斯与DOE,Johnson Matthey和Pacific Northwest国家实验室合作,并在开始时发起了持续的低温No_X减少计划2015年并于2017年完成。通过这项合作,我们正在探索催化剂配方和催化剂架构,增强催化活性在150°C;在SCR进料气体中接近NO和NO_2的理想比率的机会;强大的低温还原剂交付选项;以及整体系统集成的要求。本文将提供有关在商业上可行解决方案的路径上使用的方法和开启发动机性能演示的方法的信息。

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