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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >The effect of the contact between platinum and soot particles on the catalytic oxidation of soot deposits on a diesel particle filter
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The effect of the contact between platinum and soot particles on the catalytic oxidation of soot deposits on a diesel particle filter

机译:铂和烟灰颗粒之间的接触对柴油机颗粒过滤器上烟灰沉积物催化氧化的影响

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Experiments were performed with two model soot aerosols brought into different forms of contact with Pt aerosol particles, to investigate the effectiveness of this contact in lowering the catalytic soot oxidation temperature. The contact was either generated between individual particles in the aerosol state (Pt-doped soot to simulate a fuel borne catalyst), or by sequential or simultaneous deposition of separately generated soot and Pt aerosols onto a sintered metal filter. (Formation of a soot cake on previously deposited Pt aerosol would simulate a catalyst coated diesel particle filter.) The catalytic activity was determined in all cases from temperature ramped oxidation in air of the filtered particles, and defined as the 50% conversion temperature. It was found that Pt-doped soot and simultaneously filtered aerosols were both equally effective in reducing the oxidation temperature by up to 140-250 degrees C for the spark discharge soot (with 3-47 wt% Pt concentration in the soot cake), and by up to 140 degrees C for the pyrolysis soot (3 wt% Pt). Conversely, the deposition of a thin soot layer of 5-10 mu m thickness onto Pt, or vice versa, produced only a slight temperature reduction on the order of about 13-42 degrees C. These results suggest that the distance between soot and Pt particles plays a key role in promoting an effective oxidation on the filter, which is consistent with the role of Pt particles as local generators of activated oxygen. (C) 2006 Elsevier B.V. All rights reserved.
机译:对两种模型烟灰气雾剂与Pt气雾剂颗粒进行不同形式的接触进行了实验,以研究这种接触在降低催化烟灰氧化温度方面的有效性。接触是在气溶胶状态的各个颗粒之间发生的(掺杂Pt的烟灰模拟燃料基催化剂),或者是通过将单独生成的烟灰和Pt气雾剂依次或同时沉积到烧结金属过滤器上而产生的。 (在先前沉积的Pt气溶胶上形成烟灰饼将模拟涂覆有催化剂的柴油颗粒过滤器。)在所有情况下,催化活性均由过滤后的颗粒在空气中的温度升高的氧化确定,并定义为50%的转化温度。已发现,Pt掺杂的烟灰和同时过滤的气溶胶对于将火花放电烟灰(烟灰饼中Pt浓度为3-47 wt%)的氧化温度降低140-250摄氏度都同样有效,并且对于热解烟灰(3 wt%Pt)最高可达140摄氏度。相反,在Pt上沉积5-10微米厚的薄烟灰层,反之亦然,仅产生约13-42摄氏度的轻微温度降低。这些结果表明,烟灰与Pt之间的距离Pt颗粒在促进过滤器上有效氧化方面起着关键作用,这与Pt颗粒作为活性氧的局部生成器的作用是一致的。 (C)2006 Elsevier B.V.保留所有权利。

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