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Catalytic oxidation of diesel soot over transition metal doped lanthanum stannate pyrochlores with a O2/NO mixture

机译:O2 / NO混合物在过渡金属掺杂的锡酸镧镧系烧绿石上催化氧化柴油机烟ot

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In order to solve the soot emission problems from diesel engines, a series of La2Sn1.8M0.2O7 (M= Sn, Mn, Fe, Co, Cu) oxides with pyrochlore structure were synthesized by co-precipitation, and investigated for soot oxidation with a O2/NO mixture by Temperature-programmed Oxidation. The incorporation of transition metals strongly influences the crystallite size, surface area and redox properties of the catalysts.All the pyrochlore oxides display catalytic soot oxidation activity with nearly 100% selectivity towards CO2. The doped pyrochlores exhibit higher activities than the undoped, which may be related to the enhancement of reducibility.Among them, La2Sn1.8Mn0.2O7 possessed the best activity with Ti = 341℃. The pyrochlore oxides seem to be a novel active alternative for catalytic soot oxidation.
机译:为解决柴油机烟尘排放问题,通过共沉淀法合成了一系列具有烧绿石结构的La2Sn1.8M0.2O7(M = Sn,Mn,Fe,Co,Cu)氧化物,并研究了其烟灰氧化机理。通过程序升温氧化生成O2 / NO混合物。过渡金属的加入强烈影响催化剂的微晶尺寸,表面积和氧化还原特性。所有烧绿石氧化物均显示出催化烟ot氧化活性,对CO2的选择性接近100%。掺杂的烧绿石比未掺杂的烧绿石具有更高的活性,这可能与还原性的增强有关。其中,Ti = 341℃时,La2Sn1.8Mn0.2O7的活性最高。烧绿石氧化物似乎是催化烟灰氧化的新型活性替代物。

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