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Hydrogen-rich Syngas Production from Ethanol Dry Reforming on La-doped Ni/Al2O3 Catalysts: Effect of promoter loading

机译:富含富含氢的合成气来自La-掺杂Ni / Al2O3催化剂的乙醇干重塑:启动子负载的影响

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Ethanol dry reforming has been studied over La-promoted Ni catalysts supported on Al2O3 with different promoter loadings at varying CO2 partial pressure of 20-50 kPa. Catalysts were prepared via co-impregnation technique and characterized using BET surface area, X-ray diffraction measurement, temperature-programmed calcination and scanning electron microscopy. Doped and undoped catalysts possessed high surface area of about 86-108 m~2 g~(-1) and La promoter was well-dispersed on support surface. X-ray diffraction measurements indicated the formation of La2O3, NiO and NiAl2O4 phases in line with temperature-programmed calcination results. La-addition enhanced the dispersion of NiO particles and reduced the agglomeration of metal oxides. Both C2H5OH and CO2 conversions improved with increasing CO2 partial pressure rationally due to the growing secondary CO2 reforming of CH4 reaction. The ratio of H2/CO produced from ethanol dry reforming varied from 1.1 to 1.4 favored for usage as feedstocks of Fischer-Tropsch synthesis. The yield of H2 and CO also enhanced with increasing CO2 partial pressure whilst the optimal La loading in terms of C2H5OH conversion was observed at 3%La and catalytic activity increased with promoter addition reasonably owing to the redox properties of La promoter. CO2 reforming of ethanol reaction appeared via ethanol decomposition to CH4 intermediate product, which was subsequently converted to CO and H2 mixture through CH4 dry reforming reaction.
机译:乙醇干重整已经被研究了支持Al2O3上在20-50千帕的不同CO2分压不同的启动负载拉促进的镍催化剂。催化剂通过共浸渍技术制备,并使用比表面积,X射线衍射测定,程序升温焙烧和扫描电子显微镜表征。掺杂和未掺杂的催化剂具有约86-108米〜2 G〜(-1)和La启动子分散良好的上支撑表面的高的表面积。 X射线衍射测量表明镧,NiO和NiAl2O4相行中形成用程序升温焙烧的结果。 LA-除了增强的NiO颗粒的分散和还原的金属氧化物的凝聚。既C2H5OH和CO 2的转化与由于日益增长的次级CO2 CH4反应的重整理性增加CO 2分压的提高。 H 2 / CO的比例在乙醇中干重整变化从1.1至1.4赞成使用如费 - 托合成的原料制备。 H 2和CO的产率也提高了与3%的La,观察到在C2H5OH换算的增加CO 2分压而最佳的La装载和催化剂的活性与助除了合理由于拉启动子的氧化还原性能增加。 CO2乙醇反应的重整经由乙醇分解似乎CH4中间产物,其随后通过干CH4转化为CO和H 2混合物的重整反应。

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