采用选择性催化还原(SCR)控制直喷式柴油机的排放特性

S. Prabhakar, M. Karthikeyan, K. Annamalai, V. N. Banugopan
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引用次数: 17

摘要

排放控制是当今汽车工业面临的最大挑战之一。排放控制可以通过控制燃烧或处理废气来实现。后者相对容易,因为很少或根本不需要修改引擎本身。其中一种后处理方法是使用催化转化器。但是,由于使用铂和钯/铑,3路转换器价格昂贵。其中一种选择是使用选择性催化还原,即根据所使用的发动机类型减少特定的任务。例如,CI发动机的主要排放物是氮氧化物和PM。本项目旨在利用可控硅减少NOX并对其进行优化。本项目提出了一种建模方法来优化选择性催化还原(SCR)系统的设计。本文研究了SCR技术的两大主要问题——氨滑和氮氧化物转化效率。建模方法考虑了尿素喷雾雾化、液滴蒸发、尿素分解和湍流混合等物理过程。此外,考虑催化剂基片和穿孔板的流动阻力,分析了可控硅转化器内的速度分布和压降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control of emission characteristics by using Selective Catalytic Reduction (SCR) in D.I. diesel engine
Emission control is one of the biggest challenge in today's automotive industry. Emission control can be achieved either by controlling combustion or by treating the exhaust gas. The latter is comparatively easier since there is less or no need to modify the engine itself. One such after treatment method is the use of catalytic converter. But, the 3-way converter is expensive due to use of both platinum and palladium/rhodium. One of the alternative is the use of selective catalytic reduction, i.e., reduction of a particular mission based on the type of the engine used. For example, the major emissions in case of CI engines are NOX and PM. This project aims at reduction of NOX using SCR and its optimization. This project presents a modelling approach to the design optimization of Selective Catalytic Reduction (SCR) systems. The present study is concerned with ammonia slip and conversion efficiency of oxides of nitrogen (NOx), which are two major issues of SCR technologies. The physical processes including urea spray atomization, droplet evaporation, urea decomposition and turbulent mixing are accounted for in the modelling method. In addition, the velocity distribution and pressure drop in the SCR converter are analyzed with the consideration of flow resistances of the catalyst substrates and perforated plates.
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