首页> 外文会议>SAE World congress;Diesel exhaust emission control session >Soot and Ash Deposition Characteristics at the Catalyst- Substrate Interface and Intra-Layer Interactions in Aged Diesel Particulate Filters Illustrated using Focused Ion Beam (FIB) Milling
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Soot and Ash Deposition Characteristics at the Catalyst- Substrate Interface and Intra-Layer Interactions in Aged Diesel Particulate Filters Illustrated using Focused Ion Beam (FIB) Milling

机译:使用聚焦离子束(FIB)铣削说明的老化柴油颗粒过滤器中催化剂-基材界面处的烟灰沉积特性和层内相互作用

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The accumulation of soot and lubrication-derived ash particles in a diesel particulate filter (DPF) increases exhaust flow restriction and negatively impacts engine efficiency. Previous studies have described the macroscopic phenomenon and general effects of soot and ash accumulation on filter pressure drop. In order to enhance the fundamental understanding, this study utilized a novel apparatus, that of a dual beam scanning electron microscope (SEM) and focused ion beam (FIB), to investigate microscopic details of soot and ash accumulation in the DPF. Specifically, FIB provides a minimally invasive technique to analyze the interactions between the soot, ash, catalyst/washcoat, and DPF substrate with a high degree of measurement resolution. The FIB utilizes a gallium liquid metal ion source which produces Ga~+ ions of sufficient momentum to directionally mill away material from the soot, ash, and substrate layers on a nm-μm scale. As the FIB cuts into the sample, uncovering intra-layer details, the coupled high resolution SEM imaging and energy dispersive x-ray (EDX) analysis provide both morphological and chemical data. This tool was applied to investigate soot and ash accumulation in the DPF, with a specific focus on characterizing interactions between the soot/ash/DPF interfaces, such as soot penetration into the ash layer, as well as soot and ash accumulation in the DPF surface pores. In particular, ash and soot particle size, layer pore structure, and the extent of penetration or intra-layer mixing, are all parameters directly impacting DPF pressure drop, which may be quantified using this technique. The work in this study leveraged existing databases of aged DPFs containing various levels of soot and ash, originating from field trials and controlled laboratory testing. Results obtained with this technique provide a fresh and complementary perspective, as well as additional details useful to understand the macroscopic observations of the combined ash and soot effects on diesel particulate filter pressure drop.
机译:柴油机微粒过滤器(DPF)中烟灰和润滑灰烬微粒的堆积会增加排气流量限制,并对发动机效率产生负面影响。先前的研究已经描述了宏观现象以及烟灰和灰分积累对过滤器压降的一般影响。为了增强基础知识,本研究使用了一种新颖的设备,即双束扫描电子显微镜(SEM)和聚焦离子束(FIB),以研究DPF中烟灰和灰分积聚的微观细节。具体而言,FIB提供了一种微创技术,以很高的测量分辨率分析烟灰,灰分,催化剂/修补基面涂层和DPF基材之间的相互作用。 FIB使用镓液态金属离子源,该离子源产生足够动量的Ga〜+离子,以纳米级的微米级方向将材料从烟灰,灰分和基底层定向磨离掉。当FIB切入样品时,发现层内细节,而耦合的高分辨率SEM成像和能量色散X射线(EDX)分析提供了形态和化学数据。该工具用于调查DPF中的烟尘和灰分积累,特别着重于表征烟灰/灰分/ DPF界面之间的相互作用,例如烟灰渗入灰层以及DPF表面中的烟灰积累毛孔。尤其是,灰分和烟灰的粒径,层孔结构以及渗透或层内混合的程度都是直接影响DPF压降的参数,可以使用此技术对其进行量化。这项研究的工作利用了来自现场试验和受控实验室测试的,包含不同含量烟灰和灰分的老化DPF的现有数据库。用这种技术获得的结果提供了一个崭新的,互补的观点,以及有助于理解灰烬和烟灰对柴油机颗粒过滤器压降影响的宏观观察的其他细节。

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