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Pt-Ce-soot generated from fuel-borne catalysts: soot oxidation mechanism

机译:由燃料催化剂产生的Pt-Ce-烟灰:烟灰氧化机理

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摘要

Soot containing Ce-, Pt-, Pt-Ce-, Fe-, and Cu-fuel-borne catalysts is generated in a diesel engine, is characterised by XRD, and studied in oxidation with O_2 and NO + O_2 under various reaction conditions. Fe-, Pt-Ce- and Ce-soot are oxidised at lower temperature with O_2, compared with Pt-soot, and the opposite trend is observed with NO + O_2. NO is oxidised to NO2 more efficiently over Pt-soot and decreased the soot oxidation temperature by about 150 °C, compared with Ce-, Fe- or Pt-Ce-soot. On the other hand, NO2 is most efficiently utilised over the Pt-Ce- and Ce-soot. The soot oxidation under the different feed gas conditions demonstrates that nitrate species are involved in the oxidation of Ce- and Pt-Ce-soot. The oxidation species with the decreasing order of activity are: (1) nitrates, (2) NO2, (3) lattice oxygen, and (4) gas-phase oxygen. All the above species are involved in the oxidation of Pt-Ce-soot.
机译:含Ce,Pt,Pt-Ce,Fe和Cu燃料的催化剂的烟ot是在柴油发动机中生成的,用XRD表征,并研究了在各种反应条件下用O_2和NO + O_2进行氧化的情况。与Pt-煤烟相比,Fe-,Pt-Ce-和Ce-煤烟在较低的温度下被O_2氧化,而NO + O_2则观察到相反的趋势。与Ce-,Fe-或Pt-Ce-烟灰相比,NO在Pt-烟灰上更有效地氧化为NO2,并使烟灰氧化温度降低了约150°C。另一方面,NO2在Pt-Ce-和Ce-soot上得到最有效的利用。在不同进料气条件下的烟灰氧化表明,硝酸盐类物质参与了Ce和Pt-Ce烟灰的氧化。活性降低的氧化物种为:(1)硝酸盐,(2)NO2,(3)晶格氧和(4)气相氧。上述所有物质都参与了Pt-Ce烟灰的氧化。

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