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首页> 外文期刊>International journal of chemical engineering >The Experimental and Simulation Study of Selective Catalytic Reduction System in a Single Cylinder Diesel Engine Using NH3as a Reducing Agent
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The Experimental and Simulation Study of Selective Catalytic Reduction System in a Single Cylinder Diesel Engine Using NH3as a Reducing Agent

机译:使用NH3AS降低药剂在单缸柴油机中选择性催化还原系统的实验性和仿真研究

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Selective catalytic reduction (SCR) technology has been widely used in automotive applications in order to meet the stringent limits on emission standards. The maximum NOxconversion efficiency of an SCR depends on temperature and mass flow rate of an exhaust gas. In order to assess the suitability of Cordierite/Pt catalyst for low temperature application, an experimental work is carried out using single cylinder diesel engine for different load conditions by varying ammonia induction rate from 0.2 kg/hr to 0.8 kg/hr. The simulation is carried out using AVL FIRE for the validation of experimental results. From the study, it has been found that for 0.6 kg/hr ammonia induction rate the maximum conversion is achieved, whereas, for 0.8 kg/hr, conversion is reduced due to desorption of ammonia. Also it has been found that, at 75% of load, for all mass flow rates of ammonia the conversion was drastically reduced due to higher exhaust gas temperature and higher emission of unburnt hydrocarbons. More than 55% of NOxconversion was achieved using Cordierite/Pt catalyst at a temperature of 320°C.
机译:选择性催化还原(SCR)技术已广泛用于汽车应用中,以满足排放标准的严格限制。 SCR的最大NOxCONVERSVERS效率取决于废气的温度和质量流速。为了评估低温施加的堇青石/ Pt催化剂的适用性,通过从0.2kg / hr的不同氨诱导速率从0.2kg / hr到0.8kg / hr,使用单缸柴油发动机进行实验工作。使用AVL Fire进行模拟以验证实验结果。从研究来看,已经发现,对于0.6kg / hR氨诱导速率,实现了最大转化率,而对于0.8kg / hr,由于氨的解吸,转化减少。此外,已经发现,在75%的载荷中,对于氨的所有质量流量,由于较高的废气温度和更高的未燃烧烃的发射,转化率大大降低。使用堇青石/ Pt催化剂在320℃的温度下实现超过55%的NOxcoverss。

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