Microwave Heating of Cordierite Ceramic Substrate for After Treatment Systems

R. C. Marin, S. Savu
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引用次数: 2

Abstract

Selective catalyst reduction is one of the most affordable and successful technologies aimed at reducing NOx emissions from diesel engines. However, the reduction process can be achieved if a certain temperature is reached for the ceramic substrate of the catalytic core. The required temperatures for catalytic reaction vary from 2500 C to 4500 C depending on the technology applied in the catalytic processes. This paper aims at presenting preliminary research in microwave cordierite heating, which is a type of magnesium aluminium silicate used as ceramic honeycomb substrate (catalyst monolith) in the after treatment system in the automotive industry. The research focused on testing the Mg2Al4Si5O18 composite material (cordierite) for different microwave heating regimes in order to establish the level of microwave power required for fast heating. This application will be subject for the further development of new MW-SCR after treatment systems in order to reduce the NOx emissions at cold start engine or low operating regimes of non-road mobile machinery engines. The ceramic composite material was heated for 5 levels of microwave power, from 600 W to 1400 W, using a 6 kW microwave generator coupled with a matching load impedance tuner, and the temperatures were recorded using an IR pyrometer.
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后处理系统中堇青石陶瓷基板的微波加热
选择性催化剂还原技术是降低柴油发动机NOx排放的最经济、最成功的技术之一。然而,如果催化核心的陶瓷衬底达到一定的温度,则可以实现还原过程。根据催化过程中应用的技术,催化反应所需的温度从2500℃到4500℃不等。本文对微波加热堇青石进行了初步研究。堇青石是一种硅酸镁铝材料,在汽车后处理系统中用作陶瓷蜂窝基底(催化剂单体)。研究重点是测试Mg2Al4Si5O18复合材料(堇青石)在不同的微波加热条件下的微波功率水平,以确定快速加热所需的微波功率水平。这项申请将进一步发展新的MW-SCR后处理系统,以减少发动机在冷启动或非道路移动机械发动机低运转状态下的氮氧化物排放。利用6kw的微波发生器和匹配的负载阻抗调谐器,对陶瓷复合材料进行了从600 W到1400 W的5级微波功率加热,并用红外高温计记录了温度。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
1
审稿时长
16 weeks
期刊最新文献
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