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Behavior of different soot combustion catalysts under NOx/O2. Importance of the catalyst–soot contact

机译:在NOx / O2下不同烟灰燃烧催化剂的行为。催化剂与烟灰接触的重要性

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摘要

Four different catalysts (Pt/Al2O3, Ce0.8Zr0.2O2, PrO2−x and SrTiCuO3) have been investigated on a laboratory scale to evaluate their potential as diesel soot combustion catalysts under different experimental conditions, which simulate the situation found in a continuous regeneration technology trap (dual-bed configuration of catalyst and soot) or a catalyst-coated filter system (single-bed configuration, both catalyst and soot particles mixed under loose-contact mode). Under dual-bed configuration, the behavior of the catalysts towards soot combustion are very similar, despite the differences observed in the NO2 production profiles. However, under single-bed configuration, there are important differences in the soot combustion activities and in the NO2 slip profiles. The configurations chosen have an enormous impact on CO/(CO + CO2) ratios of combustion products as well. The most active catalyst under NOx + O2 is PrO2−x combining a high contribution of active oxygen-assisted soot combustion as well as high NO2 production activity along the catalytic bed.
机译:已经在实验室规模上研究了四种不同的催化剂(Pt / Al2O3,Ce0.8Zr0.2O2,PrO2-x和SrTiCuO3),以评估它们在不同实验条件下作为柴油机烟灰燃烧催化剂的潜力,它们模拟了连续再生中的情况。技术捕集阱(催化剂和烟灰的双床配置)或涂有催化剂的过滤器系统(单床配置,催化剂和烟灰的颗粒均在疏松接触模式下混合)。在双床配置下,尽管在NO2生产曲线中观察到了差异,但催化剂对烟灰燃烧的行为非常相似。但是,在单床配置下,烟灰燃烧活动和NO2滑移曲线存在重要差异。所选择的配置也对燃烧产物的CO /(CO + CO2)比产生巨大影响。在NOx + O2下最活泼的催化剂是PrO2-x,结合了活性氧辅助烟灰燃烧的高贡献以及沿着催化床的高NO2产生活性。

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