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Study of catalytic regeneration mechanisms in diesel particulate filters using coupled reaction-diffusion modelling

机译:耦合反应扩散模拟柴油颗粒滤波器催化再生机制研究

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Diesel particulate filters are today widely accepted as a viable technology for drastically reducing particulate emissions from diesel engines. Current applications are based on some form of catalytic assistance for the filter regeneration purposes, either in the form of a fuel-borne catalyst or by employing catalyzed filters. This paper presents an experimental and computational study of the prevailing reaction mechanisms in the catalyst-supported DPF systems. The knowledge of the soot reaction kinetics in uncatalyzed filters with O{sub}2 and NO{sub}2 is a prerequisite in this respect. Next, the reaction rates in the case of using a Ce-based, fuel-borne catalyst are evaluated. Emphasis is given on the importance of oxygen diffusion effects during uncontrolled regeneration. Finally, the regeneration mechanisms in a catalyst-coated filter are studied. In this case, experiments and simulations are carried out for controlled and uncontrolled regenerations, revealing differences in the governing reaction-diffusion processes. The diffusion of NO{sub}2, which appears important for low temperature regenerations is studied parametrically in more detail. Concluding, each configuration exhibits different characteristics regarding the reaction mechanism and its temperature dependence, with important implications for the system designer of diesel catalytic after-treatment systems.
机译:今天柴油微粒过滤器广泛被认为是可行的技术,用于大幅减少柴油发动机的微粒排放。目前的应用基于用于过滤器再生目的的某种形式的催化辅助,以燃料催化剂的形式或通过采用催化过滤器。本文介绍了催化剂支持的DPF系统中普遍反应机制的实验和计算研究。用O {Sub} 2和NO {Sub} 2的烟灰反应动力学的知识是undalyzed过滤器中的ob {sub} 2是这方面的先决条件。接下来,评估使用Ce基燃料催化剂的情况下的反应速率。给出了在不受控制的再生过程中氧扩散效应的重要性。最后,研究了催化剂涂覆的过滤器中的再生机制。在这种情况下,进行实验和模拟,用于控制和不受控制的再生,揭示控制反应扩散过程的差异。在参数上更详细地研究了NO {SUB} 2的扩散,这对于低温再生是重要的。结论,每种配置表现出关于反应机制的不同特性及其温度依赖性,对柴油催化后处理系统的系统设计者具有重要意义。

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