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On the quantification of the controlling regimes in automotive catalytic converters

机译:汽车催化转化器中控制方式的量化

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The conversion of pollutants in automotive catalytic converters is influenced by a number of physical and chemical processes that take place in the gaseous and solid phases as the exhaust gases flow through the converter. A detailed understanding of the complex processes involving flow dynamics, heat and mass transport and heterogeneous surface reactions is of crucial importance to improve the converter design. The main objective of the present study is to quantify the magnitudes of the external and internal mass transfer as well as chemical reaction limiting processes as a function of the converter operating temperature. To this end, experimental data, obtained for a three way catalyst (TWC) under real world operating conditions, are analyzed and compared against analytical expressions that allow for the quantification of the different limiting processes involved. The results demonstrate that (i) the external mass transfer resistance overlaps the reaction resistance only at moderate operating temperatures and not immediately above the ignition temperature as generally considered in the literature, (ii) the transport phenomena (external and internal mass transfer) represents 90% of the total resistance for temperatures higher than 792 K, (iii) the internal mass transfer in the porous washcoat presents a larger resistance than the external mass transfer from the bulk fluid to the washcoat wall even at high operating temperatures, and (iv) based on the quantification of the individual resistances as a function of the TWC operating temperature, it was demonstrated both the influence of the substrate cell density and of the effective diffusivity on the TWC conversions. ? 2010 American Institute of Chemical Engineers AIChE J, 2011
机译:汽车尾气催化转化器中污染物的转化受废气流经转化器时在气相和固相中发生的许多物理和化学过程的影响。对涉及流动力学,热量和质量传输以及异质表面反应的复杂过程的详细了解对于改进转换器设计至关重要。本研究的主要目的是量化外部和内部质量转移的量以及化学反应限制过程随转炉工作温度的变化。为此,分析了在实际操作条件下针对三效催化剂(TWC)获得的实验数据,并与允许量化所涉及的不同限制过程的分析表达式进行了比较。结果表明:(i)外部传质阻力仅在中等工作温度下才与反应阻力重叠,并且不像文献中通常认为的那样直接高于点火温度,(ii)传输现象(外部和内部传质)为90在高于792 K的温度下占总阻力的百分比,(iii)即使在较高的工作温度下,多孔修补基面涂层内部的质量传递也比从本体流体传递至修补基面壁的外部质量传递的电阻大;(iv)基于作为TWC工作温度的函数的单个电阻的量化,证明了基片单元密度和有效扩散率对TWC转化率的影响。 ? 2010美国化学工程师学会AIChE J,2011

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