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Emission reduction during cold start via catalyst surface control

机译:通过催化剂表面控制在冷启动过程中减少排放

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摘要

The present paper is a preliminary investigation of a new approach to the reduction of pollutant emissions during a cold start. During a cold start the volume of the exhaust gases is considerably smaller than those under full load. Therefore, only a small portion of the catalyst active surface is required to process the gases. As the exhaust gases flow from the upstream surface to the downstream surface, they meet with the cold surface of the catalyst, which they should warm up first, before light-off. The larger that surface, the more time will be needed for its warm-up, which will increase the time required for a light-off. The experimental results presented here indicate that there can be a significant reduction of the pollutant emissions during the cold start of an engine, if a system can be devised that could adjust the catalyst active surface during start-up proportionally to the exhaust gas volume. There are strong indications that a quicker warm-up of the catalyst and a faster initiation of catalysis can be achieved by focusing the gas flow towards the centre core of the monolith. In this way the remaining ceramic body of the catalytic converter operates as 'a heat insulator. This idea may be utilized in the design of catalyst system with variable active surface.
机译:本文是对冷启动期间减少污染物排放的新方法的初步研究。在冷启动期间,废气的体积比满负荷时的废气小得多。因此,仅需要催化剂活性表面的一小部分来处理气体。当废气从上游表面流向下游表面时,它们与催化剂的冷表面相遇,在起燃之前,应先将其预热。该表面越大,预热所需的时间就越多,这将增加起火所需的时间。此处提供的实验结果表明,如果可以设计一种能够在启动过程中与废气量成比例地调节催化剂活性表面的系统,则可以在发动机冷启动期间显着减少污染物排放。有强烈的迹象表明,通过将气流集中在整体结构的中心,可以加快催化剂的预热和催化的启动速度。以此方式,催化转化器的其余陶瓷体用作隔热体。该想法可用于具有可变活性表面的催化剂体系的设计中。

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