首页> 外文期刊>Journal of CO2 Utilization >X-ZrO2 addition (X = Ce, La, Y and Sm) on Ni/MgAl2O4 applied to methane tri-reforming for syngas production
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X-ZrO2 addition (X = Ce, La, Y and Sm) on Ni/MgAl2O4 applied to methane tri-reforming for syngas production

机译:Ni / MgAl2O4上的X-ZrO2添加(X = CE,LA,Y和SM)应用于合成气生产的甲烷三重整

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Nickel supported on MgAl2O4 spinel (Ni/MA) and the effects of X-ZrO2 (X = Ce, La, Sm and Y) addition to the support were studied in Methane Tri-Reforming (MTR) process. The characterization techniques employed were XRD, B.E.T., H-2-TPR, H-2-TPD, CO2-TPD, XPS, and in situ XANES. The presence of lanthanides and Y associated to ZrO2 modified the Ni-0 dispersion and the surface basicity. These properties influence the coke formation, which increased as the metallic dispersion diminished. Ce-ZrO2 association on the spinel support led to the greatest catalytic performance, increasing reactants conversions due to its adequate base properties that allowed the adsorption of new reactants molecules due to coke elimination, associated to its smallest apparent Ni-0 average size. Moreover, the Ce-Zr support favored the NiO activation, without compromising the nickel dispersion.
机译:在MgAl2O4尖晶石(Ni / ma)上负载镍和甲烷三重整(MTR)工艺中的X-ZrO2(X = Ce,La,Sm和Y)的作用。 所用的表征技术是XRD,B.E.T.,H-2-TPR,H-2-TPD,CO2-TPD,XPS和原位Xanes。 与ZrO2相关的镧系元素和Y改性Ni-0分散和表面碱度。 这些性质影响了焦炭形成,随着金属分散减少而增加。 Ce-ZrO2在尖晶石支撑件上的关联导致最大的催化性能,增加反应物转化,由于其充分的基础特性,使其由于焦炭消除而吸附新的反应物分子,与其最小的表观Ni-0平均尺寸相关。 此外,CE-ZR支持支持NIO活化,而不会损害镍分散体。

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