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首页> 外文期刊>SAE International Journal of Engines >Enhancement of Diesel Soot Combustion with Oxygen on Particulate Filters After Injection of Dicyclopentadienyl Iron (Ferrocene) in the Exhaust Pipe
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Enhancement of Diesel Soot Combustion with Oxygen on Particulate Filters After Injection of Dicyclopentadienyl Iron (Ferrocene) in the Exhaust Pipe

机译:在排气管中注入二环戊二烯基铁(二茂铁)后,微粒过滤器上的氧气促进柴油机烟灰燃烧。

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摘要

For the regeneration of diesel particulate filters with oxygen, temperatures above 550℃ are normally required. The increase of the exhaust gas temperature to temperatures above 500℃ demands a large amount of energy, so that strategies to reduce the regeneration temperature have to be considered. One option is the injection of a catalyst, which reduces the required regeneration temperature. Hence, a system was developed at HJS Emission Technology GmbH to inject catalyst-precursor into the exhaust gas pipe, whereby the catalysts are generated due to decomposition of the precursor in the hot exhaust gas. A technique based on the calculation of apparent activation energies was developed to characterize the soot combustion on the filter. In the first step metal oxide catalysts, like cerium(IV)oxide, manganese-oxide and iron(III)oxide were investigated after injection of their nitrate precursors dissolved in water. These catalysts showed poor activities, by the reason of the low specific surfaces of the catalyst particles, which were achieved from the decomposition of the nitrate precursors. In the next step ferrocene (dicyclopentadienyl iron) dissolved in toluene was used as a precursor for the generation of the iron(III)oxide catalyst. The advantage of dicyclopentadienyl iron is the fact that it sublimes into the gas phase at temperatures above 90℃. The catalyst is then generated from gaseous ferrocene in the exhaust pipe, whereby catalyst particles far below 1μm can be achieved. Experiments revealed much higher activities of the iron(III)oxide catalysts generated from dicyclopentadienyl iron compared to the nitrate precursor. Additionally the dependency of the catalyst performance on the catalyst-soot-ratio was investigated in detail. An iron(III)oxide-soot ratio of 4 wt% was determined to be a reasonable value for the regeneration of the diesel particulate filter.
机译:为了用氧气再生柴油机微粒过滤器,通常需要高于550℃的温度。将废气温度提高到500℃以上需要大量的能量,因此必须考虑降低再生温度的策略。一种选择是注入催化剂,这降低了所需的再生温度。因此,HJS Emission Technology GmbH开发了一种将催化剂前体注入废气管的系统,从而由于热废气中前体的分解而产生催化剂。开发了一种基于视在活化能计算的技术,以表征过滤器上的烟尘燃烧。在第一步中,在注入溶解在水中的硝酸盐前体后,研究了金属氧化物催化剂,如氧化铈(IV),氧化锰和氧化铁(III)。这些催化剂由于由硝酸盐前体的分解而获得的低比表面积的催化剂而显示出较差的活性。在下一步中,将溶解在甲苯中的二茂铁(二环戊二烯基铁)用作生成氧化铁(III)催化剂的前体。二环戊二烯基铁的优点是,它在90℃以上的温度下会升华成气相。然后从排气管中的气态二茂铁中产生催化剂,从而可以实现远低于1μm的催化剂颗粒。实验表明,与硝酸盐前体相比,由二环戊二烯基铁生成的氧化铁(III)催化剂的活性更高。另外,详细研究了催化剂性能对催化剂烟灰比的依赖性。确定4重量%的氧化铁(III)-烟灰比是柴油颗粒过滤器再生的合理值。

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