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Cerium–zirconium mixed oxide nanostructures for diesel soot oxidation: synthesis and effect of structure

机译:用于柴油烟灰氧化的铈 - 锆混合氧化物纳米结构:结构的合成和效果

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Nanostructured materials have been used in several branches of science and technology. Particulate matter is one of the major air pollution concerns. In this work, nanorods and nanoparticles of Ce _(0.8) Zr _(0.2) O _(2) (CZ) mixed oxides were prepared by different routes, and the use of an organic template was evaluated in diesel soot oxidation. The catalysts were characterized by several techniques including structural analysis (XRD, TEM, N _(2) adsorption–desorption) and activity (TPR/MS, TPO/MS). A fast TPR/MS method is proposed to calculate hydrogen consumption that can be correlated to the oxygen storage capacity (OSC). It was demonstrated that CZ-nanorods with twice the amount of template in the syntheses (CZ-NRs-2X) were very active for soot oxidation with T _(50%) at 351 °C, and CO _(2) and H _(2) O were the only oxidation products from Printex?-U (Evonik). This catalyst, reported for the first time, was subjected to up to three cycles and it showed fair activity, proving that this morphology is one of the best mixed oxides of CZ for oxidation.
机译:纳米结构材料已在科学技术的几个分支中使用。颗粒物是主要的空气污染问题之一。在该工作中,通过不同的途径制备Ce _(0.8)Zr _(0.2)o _(0.2)×(2)(CZ)混合氧化物的CE _(0.8)α(0.2)×(2)(CZ)混合氧化物的纳米棒和纳米颗粒,并在柴油烟灰氧化中评价有机模板的使用。催化剂的特征在于几种技术,包括结构分析(XRD,TEM,N _(2)吸附 - 解吸)和活性(TPR / MS,TPO / MS)。提出了一种快速TPR / MS方法来计算可以与氧气储存能力(OSC)相关的氢消耗。据证明,具有两倍于合成(CZ-NRS-2x)的两倍的CZ-纳米棒对于烟灰氧化在351℃下用T _(50%),以及CO _(2)和H _ _ (2)o是来自Printex的唯一氧化产品--U(evonik)。该催化剂首次报道,持续三次循环,并显示出公平的活性,证明了这种形态是CZ的最佳混合氧化物的氧化。

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